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李文献
學歷
美國東北大學博士
經歷
國立中央大學 物理系
經濟部 智慧財產局
馬里蘭大學/美國國家標準與技術研究院 物理系/中子研究中心(博士後研究)
美國波色子研究院
研究領域
磁性超導、中子散射、低溫技術、拉曼散射
聯絡資訊
辦公室:Q202
校內分機:
重要著作及發表(學術文章/期刊/研討會)
- 專利
1.「一種高靈敏度表面電漿共振感測器」,陳顯禎、林俊佑、簡汎清、黃崑財、胡文品、陳文逸、李冠卿、李文獻,中華民國專利公告編號00586005,2004年5月1日公告。
2.「攜帶式表面電漿共振與表面強化拉曼散射光電系統及其感測方法」,陳顯禎、蘇園登、黃崑財、易政男、施至鴻、李文獻、李冠卿、陳文逸,中華民國專利公告編號I229734,2005年3月21日公告。
3.「Surface plasmon resonance sensor with high sensitivity」, Shean-Jen Chen, Ghun-Yu Lin, Fan-Ching Chien, K. T. Huang, W. P. Hu, Wen-Yih Chen, Kuan-Ching Lee, and Wen-Hsien Li, U.S. Patent, 2006/0197952 A1, Sep. 7, 2006.
- 國際重要學術會議邀請演講
1.Invited k eynote speaker, 6 th AINSE / ANBUG Neutron Scattering Symposium, Transport and magnetic properties of lightly Cr doped Bi1 xCaxMnO3 , 4 th December, 2007, Lucas Heights,
Australia.
2. Invited talk, Annual conference of Asian Crystallographic Association, 2009,Inter play between thecrystalline and magnetic structures in lightly Cr doped Bi 0.37 Ca 0.63 Mn 0.96 Cr 0.04 O 2.99 , 23 rd October,2009, Beijing, China.
3. Invited talk, Research School of Chemistry, Australian National University,Quantum spins in noblemetal nanopart icles , 9 th April, 2010, Canberra ,
4. Invited talk, CECAM workshop on Superconductivity in Nanosized Systems, Development of superconductivity through interparticle interactions in nanoparticle assemblies, 7thJuly, 2010, Lausanne, Switzerland.
5. Invited talk, 15thAnniversary HANARO Symposium, SIKA -A Multi-detectors Cold Neutron Triple-axis Spectrometer at ANSTO, 1stOctober, 2010, Deajeon, Korea.
6. Invited talk, Nano Materials Processing and Characterization, Principles and Applications of Neutron Magnetic Scattering, 19thMay, 2011, Institute of Technology-Bandung, Indonesia.
7. Invited talk, 1stannual world congress of advanced materials-2012, Electrically controllable metal-insulator-like transition in nanoparticle compacts, 7thJune, 2012, Beijing, China.
8. Invited talk, 2012 AONSA Neutron School, Principles & applications of neutron scattering techniques, 23rdOctober, 2012, Beijing, China.
9. Invited talk, Collaborative Conference on 3D & Materials Research, Tuning the Transport Characteristicsof Multi-component Nanoparticle Compacts,25thJune, 2013, Jeju, Korea.
10. Invited talk, International Nuclear Science, Technology & Engineering Conference 2013 (iNuSTEC2013), Applications of Neutron Techniques to Energy Materials, 1stOctober2013, Kuala Lumpur, Malaysia.
11. Invited talk, 2013 Energy Materials & Technology Meeting, Probing the energy materials with neutron and x-ray scatterings, 10thDecember, 2013, Orlando, USA.
12. Invited talk, 12th International Hydrocolloids Conference, Applications of x-ray and neutron scattering to soft materials: basic principles and examples, 6thMay, 2014, Taipei, Taiwan.
13. Invited talk, International Conference on Materials Science and Technology2014, Applications of scattering techniquesto energy materials: principles and examples, 13thOctober, 2014, Serpong, Indonesia.
14. Invited talk, International Conference on Small Science,Magnetic exchange paths in nano-sized core/shell Prussian Blue cubes of Rb-Co-[Fe(CN)6] coated with K-Ni[Cr(CN)6], 10thDecember, 2014, Hong Kong, China.
15. Invited talk, 2015 EMN Qingdao Meeting, Development of a ferromagnetic component in the superconducting state of Fe-excess Fe1.12Te1-xSexby electronic charge redistribution, 15thJune, 2015, 6 Qingdao, China.
16. Plenary talk, the 9th Seminar on Magnetic materials, Development of a ferromagnetic component in the superconducting state of Fe-excess Fe1.12Te1-xSexby electronic charge redistribution, 20thOctober, 2015,Palembang, South Sumatera, Indonesia.
17. Invited talk, EMN Hong Kong Meeting, Fe-excess Ions as Electronic Charge Suppliers for Zero Thermal Expansion in the Normal State of Fe1.16Te0.6Se0.4, 10thDecember, 2015, Hong Kong, China.
18. Keynote speaker, 2015 Global Research Efforts on Energy Nanomaterials (GREEN 2015), Magnetism in nanoparticles -a behavior of electronic charge redistribution, 21stDecember, 2015, Sun-Moon Lake, Taiwan.
19. Invited talk, EMN Hawaii Meeting -Magnetic Materials, Interplay between the magnetic and electric degrees-of-freedom in multiferroic Co3TeO6, 22ndMarch, 2016, Hawaii, USA.
20. Invited talk, EMN Dubai Meeting, Photo-enhanced ferromagnetism in high K+-containing K-Ni-Cr Prussian blue analogues coated on Rb-Co-Fe nanocubes, 1stApril,2016, Dubai, United Arab Emirates.
21. Invited talk, 4thInternational Conference on Physical and Theoretical Chemistry, Complex magnetic phases and photo-enhanced ferromagnetism in nano-sized core-shell Prussian blue analogue cubes, 19thSept. 2017, Dublin, Ireland.
22. Invited talk, 2017 EMN Summit Meeting,Photo-enhanced ferromagnetism in high K+-containing K-Ni-Cr Prussian blue analogues coated on Rb-Co-Fe nanocubes, 11thOctober, 2017, Chengdu, China.
23. Invited talk,EMN Milan Meeting2018,Superconductivity at 19 K in Bi nanoparticles enhanced by Ni-doping, 10th July, 2018, Milan, Italy.
24. Invited talk, International Conference on Small Science 2019, Nanometric geochemical analysis of the fault gougesof 1999 Chi-Chi earthquake: what had happened underground that night, 29thMarch, 2019, Hawaii, USA.
25.IAAM Award Lecture, European Advanced Energy Materials & Technology Congress 2019, Superconductivity driven by interparticle interactions in spin polarized nanoparticle assemblies, 10th October, 2019, Stockholm, Sweden. 7
26. Plenary Speaker, 3rd Asian Oceania Conference on Neutron Scattering, Complex magnetic incommensurability and antiferroelectric transition in multiferroic Co3TeO6, 19th November, 2019, Kenting, Taiwan.
27. Plenary Speaker, Conference for Neutron Scattering Technology 2021¸ Triple-axis Spectrometer for Energy Materials, 19th November, 2021, Kaohsiung, Taiwan.
- 學術論文
1. J.B.Sokoloff, W.-H. Li, C. H. Perry, C. F. Majkrzak, G. Shirane, and Y.Ishikawa, "Forbidden" magnon scattering in the weak ferromagnet MnSi, Solid State Commun. 52, 693-696(1984).
2. W.-H. Li, C. H. Perry, J. B. Sokoloff, J. W. Lynn, and R. M. Nicklow, Polarized neutron measurement of "forbidden" magnon scattering in Pt3Mn, J. Appl. Phys. 57(1), 3751-3752(1985).
3. W.-H. Li, C. H. Perry, J. B. Sokoloff, V. Wagner, M. E. Chen, and G. Shirane, Polarized neutron studies of "forbidden" magnons in the 2-dimensional ferromagnet K2CuF4, Phys. Rev. B 35, 1891-1898(1987).
4. J. W. Lynn, W.-H. Li, Q. Li, H. C. Ku, H. D. Yang, and R. N. Shelton, Magnetic fluctuations and two-dimensional ordering in ErBa2Cu3O7, Phys. Rev. B 36, 2374-2377(1987).
5. W.-H. Li, C. H. Perry, J. B. Sokoloff, and W. G. Stirling, Neutron studies of "forbidden" magnons in Pt3Mn -A 3-dimensional metallic ferromagnet, Solid State Commun. 64, 743-747(1987).
6. R. N. Shelton, R. W. McCallum, M. A. Damenton, K. A. Gschneidner Jr., H. C. Ku, H. D. Yang, J. W. Lynn, W.-H. Li, and Q. Li, Effects of crystal anisotropyon magnetization and magnetic order in superconducting RBa2Cu3O7-x, Physica, C 148, 285 -288(1987).
7. J. W. Lynn, W.-H. Li, Q. Li, H. C. Ku, H. D. Yang, and R. N. Shelton, Two-dimensional character of the magnetic order in ErBa2Cu3O7,Review of Solid State Physics 1, 357-361(1987).
8. W.-H. Li, J. W. Lynn, H. A. Mook, B. C. Sales, and Z. Fisk, Long range antiferromagnetic order of the Cu in oxygen deficient RBa2Cu3O6+x, Phys. Rev. B 37, 9844-9847(1988).
9. J. W. Lynn, W.-H. Li, H. A. Mook, B. C. Sales, and Z. Fisk, Nature of the magnetic order of Cu in oxygen deficient NdBa2Cu3O6+x, Phys. Rev. Lett. 60, 2781-2784(1988).
10. J. W. Lynn and W.-H. Li, Magnetic order in RBa2Cu3O6+x, J. Appl. Phys. 64, 6065-6070(1988).
11. I. Goldman, Y. Gao, S. T. Ting, J. E. Crow, W.-H. Li, and J. W. Lynn, Crystal electric fields in the rare earth-Ba-Cu-oxide superconductors, J. Magn. Magn. Mat. 76&77, 607-608(1988).
12. W.-H. Li, J. W. Lynn, H. B. Stanley, T. J. Udovic, R. N. Shelton, and P. Klavins,Crystal-field splittingsin the cubic Heusler alloysHoPd2Sn and ErPd2Sn, Phys. Rev. B 39, 4119-4126(1989).
13. W.-H. Li, J. W. Lynn, S. Skanthakumar, T. W. Clinton, A. Kebede, C. –S. Jee, J. E. Crow, and T. Mihalisin, Magnetic order of Pr in PrBa2Cu3O7, Phys. Rev. B 40, 5300-5303(1989).
14. J. W. Lynn, W.-H. Li, S. F. Trevino, and Z. Fisk,Pressure dependence of the Cu magnetic order in RBa2Cu3O6+x, Phys. Rev. B 40, 5172-5175(1989).
15. S. Skanthakumar, H. Zhang, T. W. Clinton, W.-H. Li, J. W. Lynn, Z. Fisk and S.-W. Cheong,Magnetic Phase transitionsand Structural distortion in Nd2CuO4, Physica C 160, 124-128(1989).
16. K. N. Yang, J. M. Ferreira, B. W. Lee, M. B. Maple, W.-H. Li, J. W. Lynn, and R. W. Erwin, Antiferromagneticorderingin superconductingand oxygen-deficient nonsuperconductingRBa2Cu3O7-δcompounds (R=Nd and Sm), Phys. Rev. B 40, 10963-10972(1989).
17. J. W. Lynn, T. W. Clinton, W.-H. Li, R. W. Erwin, J. Z. Liu, K. Vandervoort, R. N. Shelton, and P. Klavins, 2-d and3-d magneticbehaviorof Er in ErBa2Cu3O7, Phys. Rev. Lett. 63, 2606-2609(1989).
18. W.-H. Li, J. W. Lynn, H. B. Stanley, T. J. Udovic, R. N. Shelton, and P. Klavins, Antiferromagnetic structure and crystal-field splitting in the cubic Heusler alloys HoPd2Sn and ErPd2Sn, J. de physique C 8, 373-374(1989).
19. J. W. Lynn, W.-H. Li, H. A. Mook, B. C. Sales, and Z. Fisk, Antiferromagnetic order of the Cu in RBa2Cu3O6+x, J. de physique C 8, 2153-2154(1989).
20. W.-H. Li, J. W. Lynn, and Z. Fisk, Magnetic order of the Cu planes and chains in RBa2Cu3O6+x, Phys. Rev. B 41, 4098-4111(1990).
21. S. Skanthakumar, W.-H. Li, J. W. Lynn, A. Kebeke, J. E. Crow, and T. Mihalisin,Magnetic properties of Pr innon-superconducting PrBa2Cu3O7, Physica B 163, 239-241(1990).
22. S. Skanthakumar, H. Zhang, T. W. Clinton, I. W. Sumarlin, W.-H. Li, J. W. Lynn, Z. Fisk, and S.-W. Cheong, Magnetic phase transition in Nd2CuO4, J. Appl. Phys. 67, 4530-4532(1990).
23. J. W. Lynn,T. W. Clinton, W.-H. Li, R. W. Erwin, J. Z. Liu, R. N. Shelton, and P. Klavins, Two dimensional Magnetic Order of Er in ErBa2Cu3O7, J. Appl. Phys. 67, 4533-4535(1990).
24. J. W. Lynn, I. W. Sumarlin, S.Skanthakumar, W.-H. Li, R. N. Shelton, J. L. Peng, Z. Fisk, and S.-W. Cheong, Magnetic orderingof Nd in (Nd-Ce)2CuO4, Phys. Rev. B 41, 2569-2572(1990).
25. H. Zhang, J. W. Lynn, W.-H. Li, T. W. Clinton, D. E. Morris, and R. Sid, Two-and three-dimensional magnetic order of the rare-earth ions in RBa2Cu4O8, Phys. Rev. B 41, 11229-11236(1990).
26. W.-H. Li, K. J. Chang, W. T. Hsieh, K. C. Lee, J. W. Lynn, and H. D. Yang, Magnetic ordering of Pr in PrBa2Cu2.7Zn0.3O7-y, Phys. Rev. B48, 519-523 (1993).
27. S. Y. Wu, W. T. Hsieh, W.-H. Li, K. C. Lee, Y. Y. Chen, Lowtemperature crystal structures of heavy fermion compounds Ce3Al, Ce3In, and Ce3Sn, Chinese J. Phys. 31, 663-673(1993).
28. S. Y. Wu, W. T. Hsieh, W.-H. Li, K. C. Lee, J. W. Lynn, and H. D. Yang, Two-dimensional magnetic order of Tb in Pb2Sr2TbCu3O8, J. Appl. Phys. 75, 6598-6600(1994).
29. W. T. Hsieh, K. J. Chang, W.-H. Li, K. C. Lee, J. W. Lynn, C. C. Lai, and H. C. Ku, Magnetic ordering of Pr and Cu in TlBa2PrCu2O7-y, Phys. Rev. B 49, 12200-12205(1994).
30. W. T. Hsieh, W.-H. Li, K. C.Lee, J. W. Lynn, J. H. Shieh, H. C. Ku, Magnetic ordering of Pr in Pb2Sr2PrCu3O8, J. Appl. Phys. 76, 7124-7126(1994).
31. W.-H. Li, C. J. Jou, S. T. Shyr, K. C. Lee, J. W. Lynn, H. L. Tsay, and H. D. Yang, Effects of Ga-doping on the magnetic ordering of Pr in PrBa2Cu3O7, J. Appl. Phys. 76, 7136-7138(1994).
32. M. C.Chen,S. D.Tsai, M. R. Chen, S. Y.Ou,W.-H. Li, and K. C. Lee, Effectof silver-nanoparticle aggregation on surface-enhanced Raman scattering from benzoic acid, Phys. Rev. B 51, 4507-4515(1995).
33. W.-H. Li, S. T. Shyr, S. Y. Wu, and K. C. Lee, Influence of plane and chain impurities onthe magnetic ordering of Pr in PrBa2Cu3O7, Chinese J. Phys. 33, 41-55(1995).
34. W.-H. Li, W. T. Hsieh, S. T. Shyr, K. C. Lee, J. H. Shieh, and H. C. Ku, Superconductivity and magnetic ordering in Pb2Sr2PrCu3O8.01, Physica B 206&207,753-755(1995).
35. C.L. Lei, C. C. Wei,M. C. Chen, S. Y. Ou, W.-H. Li, K. C. Lee, Enhanced Raman scattering from crystal violetand benzoicacid molecules adsorbed on silver nanocrystals, Mater. Sci. Eng. B 32, 39-45(1995).
36. W.-H. Li,W. T. Hsieh and K. C. Lee, Dependence of powder neutron scattering on the dimensionality of magnetic order, J. Phys:Condens. Matter. 7, 6513-6522(1995).
37. W. C. Lee, T. M. Hsu, J.-I. Chyi, G. S. Lee, W.-H. Li, and K. C. Lee, Characterization of low temperature GaAs grown by molecular beam epitaxy, Appl. Surf. Sci. 92, 66-69(1996).
38. S. Y. Wu, W.-H. Li, K. C. Lee, T. H. Meen, and H. D. Yang, AC susceptibility studies of Tb ordering in Pb2Sr2TbCu3O8, J. Appl. Phys. 79, 6571-6573(1996).
39. W.-H. Li, Y. F. Lin, S. Y. Wu, W. T. Hsieh, K. C. Lee, J. W. Lynn, C. C. Lai, and H. C. Ku, Cu spin reorientation in Tl(BaSr)PrCu2O7, J. Appl. Phys. 79, 6568-6570(1996).
40. W.-H. Li, S. Y. Wu, W. T. Hsieh, and K. C. Lee, Magnetic ordering in high-TCoxides, Chinese J. Phys. 34, 538-545(1996).
41. S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn, T. H. Meen and H. D. Yang, Two-and three-dimensional magnetic correlationsof Tb in Pb2Sr2TbCu3O8, Phys. Rev. B 54, 10019-10026(1996).
42. Y. Y. Chen,Y.D.Yao, B. C. Hu, C. H. Jang, J. M. Lawrence, H. Huang, and W.-H. Li, Structure,crystalfields, magnetic interactions, and heavy fermion behavior in (Ce1-xLax)3Al, Phys. Rev. B 55, 5937-5943(1997).
43. K. C. Lee, M. R. Chen, and W.-H. Li, Time dependence of the surface enhanced Raman scattering from crystal violet adsorbed on Ag thin films, Chin. J. Phys. 35, 289-301(1997).
44. W.-H. Li, K. C. Lee, and H. C. Ku, Superconductivity and magnetic order in (Pr0.55Nd0.45)Ba2Cu3O7, J. Appl. Phys. 81, 4237-4239(1997).
45. Y. C. Lin, W. Y. Chuang, W.-H. Li, K. C. Lee, J. W. Lynn, C. L. Yang, and H. C. Ku, Crystal structure and magneticordering of Prin (Pb0.5Cu0.5)2(Ba0.5Sr0.5)2PrCu2O8, J. Appl. Phys. 81, 4940-4943(1997).
46. W.-H. Li, W. Y. Chuang, S. Y. Wu, K. C. Lee, J. W. Lynn, H. L. Tsay, and H. D. Yang, Superconductivity, magnetic fluctuations, and magnetic order in TbSr2Cu2.69Mo0.31O7, Phys. Rev. B 56, 5631 (1997).
47. J. C. Peng, W. T. Hsieh, K. C. Lee, W.-H. Li, and H. D. Yang, Structural studies of the destruction ofCu-O Chains in PrBa2Cu3O7by Ga-doping, Chin. J. Phys. 36, 72(1998).
48. Y. Y. Chen, Y. D. Yao, T. K. Lee, C. Tse, W. C. Liu, H. C. Chang, K. Y. Lin, Y. S. Lin, Z. C. Wang, and W.-H. Li, Heavy-fermion behavior in CeAl2nanoparticles, Chinese. J. Phys. 36, 468 (1998).
49. Y.-C. Lin, S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn, C. W. Lin, J.-Y. Lin, and H. D. Yang, Neutron diffraction studies of Pr ordering in PrBa2Cu4O8, Physica B 241-243, 702(1998).
50. K. C. Lee, S. T. Pai, Y. C. Chang, M. C. Chen, and W.-H. Li, Optimum massthickness of Ag-nanoparticlefilm forsurface enhanced Raman scattering, Mat. Sci. & Eng. B 52, 189-194(1998).
51. B. J. Pong, C. J. Pan, Y. C. Teng, G. C. Chi, W.-H. Li, K. C. Lee, and C. H. Lee, Structural defects and microstrain in GaN induced by Mg ion implantation, J. Appl. Phys. 83, 5992-5996 (1998).
52. W.-H. Li, J. C. Peng, Y. –C. Lin, K. C. Lee, J. W. Lynn, and Y. Y. Chen, Magnetic ordering of Ce in the heavy fermion compound Ce3Al, J.Appl. Phys. 83, 6426-6428(1998).
53. Wu SY, Chang YC, Lee KC, Li WH, Magnetic properties of Pb2Sr2PrCu3O8 studied by ac susceptibility, JOURNAL OF APPLIED PHYSICS, 83, 7318-7320(1998)
54. S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn, R. S. Liu, J. B. Wu, and C. Y. Huang,Tiltedantiferromagnetic ordering ofMnin Nd0.62Ca0.38MnO3, J. Appl. Phys. 83, 7345-7347(1998).
55. C. F. Chang, P. H. Chou, H. L. Tsay, S. S. Weng, S. Chatterjee, H. D. Yang, R. S. Liu, C. H. Shen, and W.-H. Li, Pressure effects on the transport and magnetic properties of La1.4Sr1.6Mn2O7, Phys. Rev. B. 58, 12224-12229 (1998).
56. S. Y. Wu, W.-H. Li, K. C. Lee, and H. D. Yang, Oscillating magnetic behavior in La1+xSr2-xMn2O7, Physica B 259-261, 839-840 (1999).
57. W.-H. Li, S. Y. Wu, K. C. Lee, J. W. Lynn, R. S. Liu, J. B. Wu, and C. Y. Huang, Magnetic order and spin reorientation in Nd0.45Ca0.55MnO3, J. Appl. Phys. 85, 5588-5590 (1999).
58. W.-H. Li, S. Y. Wu, Y.-C. Lin, K. C. Lee, J. W. Lynn, S. S. Weng, I. P. Hong, J. Y. Lin, and H. D. Yang, Magnetic order in double-chain PrBa2Cu4O8, Phys. Rev. B 60. 4212-4219 (1999).
59. Y. Y. Chen, Y. D. Yao, T. K. Lee, W. C. Liu, H. C. Chang, K. Y. Lin, Y. S. Lin, Z. C. Wang, and W.-H. Li, Heavy-Fermion Behavior in CeAl2nanoparticles, NanoStructured Materials 12, 719-724 (1999).
60. S. Y. Wu, R. Y. Lin, C. Y. Cheng, W.-H. Li, K. C. Lee, and H. D. Yang, Superconductivity and magnetic order in TbSr2Cu2.69Mo0.31O7, J. Magn. Magn. Mat. 209, 116-118 (2000).
61. C. M. Kuo, S. Y. Wu, W.-H. Li, K. C.Lee, and H. D. Yang, Effects of Ca-doping on the transport and magnetic properties of La1.4Sr1.6Mn2O7, J. Magn. Magn. Mat. 209, 142-144 (2000).
62. W.-H. Li, S. Y. Wu, K. C. Lee, andJ. W. Lynn, Magnetic ordering of Mn in Ca-doped NdMnO3, Physica B 276-278, 724-725 (2000).
63. S. Y. Wu, S. R. Hwang, W.-H. Li, K. C. Lee, J. W. Lynn, and R. S. Liu, Jahn-Teller distortion, charge ordering, and magnetic transitions in Ca-doped NdMnO3, Chin. J. Phys. 38, 354-359 (2000).
64. S. Y. Wu, C. M. Kuo, H. Y. Wang, W.-H. Li, K. C. Lee, J. W. Lynn, and R. S. Liu, Magnetic structure and spin reorientation of the Mn ions in NdMnO3, J. Appl. Phys. 87, 5822-5824 (2000).
65. Y. Y. Chen, Y. D. Yao, C. R. Wang, W.-H. Li, C. L. Chang, T. K. Lee, T. M. Hong, J. C. Ho, and S. F. Pan, Size-induced transition from magnetic ordering to Kondo behavior in (Ce, Al) compounds, Phys. Rev. Lett. 84, 4990-4993 (2000).
66. H. M. Luo, B. N. Lin, Y. H. Lin, H. C. Chiang, Y. Y. Hsu, T. J. Lee, H. C. Ku, C. H. Lin, H.-C. I. Kao, J. B. Shi, J. C. Ho, C. H. Chang, S. R. Hwang, and W.-H. Li, Variation of anomalous Pr ordering and crystal symmetry for the oxygenated Pr1+xBa2-xCu3O7+ysystem, Phys. Rev. B 61, 14825-14832 (2000).
67. W.-H. Li, S. Y. Wu, C. M. Kuo, K. C. Lee, J. W. Lynn, and H. D. Yang, Lattice variation, reentrance electric properties, and magnetic order in bilayered La1.02Sr1.98Mn2O7, Mat. Sci. & Eng. B56, 274-279 (2000).
68. H. Y. Wang, C. H. Chang, S. R. Hwang, W.-H. Li, K. C.Lee, J. W. Lynn, H. M. Luo, and H. C. Ku, Variation in structural and magnetic properties induced by La doping in Pr(Ba1-xLax)2Cu3O7+y, Phys. Rev. B 62, 11549-11555 (2000).
69. S. R. Hwang, W.-H. Li, K. C. Lee, J. W. Lynn, and C.-G. Wu, Spiral magnetic structure of Fe in Van der Waals gaped FeOCl and polyaniline-intercalated FeOCl,Phys. Rev. B. 62, 14157-14163 (2000).
70. C. S. Lue, J. H. Ross Jr., K. D. D. Rathnayaka, D. G. Naugle, S. Y. Wu, and W.-H. Li, Superparamagnetism and magnetic defects in Fe2VAl and Fe2VGa, J. Phys.: Condens. Matter 13, 1585-1593 (2001).
71. S. R. Hwang, W.-H. Li, K. C. Lee, J. W. Lynn, H. M. Luo, and H. C. Ku, Structural and magnetic properties of Pr1+xBa2-xCu3O7+y, Phys. Rev. B 63, 172401 (2001).
72. C. M. Kuo, S. Y. Wu, W.-H. Li, K. C. Lee, and H. D. Yang, Superconductivity and magnetic order in Gd1.5Ce0.5RuSr2Cu2O10, J. Magn. Magn. Mat. 226-230, 323-324 (2001).
73. S. Y. Wu, W.-H. Li, and H. D. Yang, Complex magnetic behaviors and evidenceof magnetic fluctuations in bilayered La2-2xSr1+2xMn2O7, Chinese J. Phys. 39, 282-292 (2001).
74. S. Y. Wu, W.-H. Li, K. C. Lee, and H. D. Yang, Crystal structure and magnetic order in bilayered La1.39Sr1.61Mn2O7, Mat. Sci. & Eng. B84, 211-216 (2001).
75. S. Y. Wu,C.C. Yang,W.-H. Li,K. C. Lee, J. W. Lynn, and H. D. Yang, Mn ordering and induced Ce ordering in La0.7Ce0.15Ca0.15MnO3, J. Magn. Magn. Mat. 239, 14-16 (2002).
76. C. C. Yang, S. Y. Wu, W.-H. Li, K. C. Lee, and H. D. Yang, Magnetic order and spin-glass behavior in (Sm0.58Y0.42)2CuO4, J. Magn. Magn. Mat. 239, 79-81 (2002).
77. C.-C. Chen, S. R. Hwang, W.-H. Li, K. C. Lee, G.-C. Chi, H.-T. Hsiao, and C.-G. Wu, Enhanced electroluminescence of polymer light-emitted diodes with direct polyaniline synthesized anodes, Poly. J. 34, 217-274 (2002).
78. C. C. Yang, S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn, R. S. Liu, and C. H. Shen,Short range magnetic correlations in the spinel LiMn2O4, Mat. Sci. & Eng. B95, 162-170 (2002).
79. W.-H. Li, S. Y. Wu, C. C. Yang, S. K. Lai, K. C. Lee, H. L. Huang,andH. D. Yang, Thermal contraction of Au nanoparticles, Phys. Rev. Lett. 89, 135504-135507 (2002)andSept. 16, 2002issue of Virtual J.of Nanoscale Sci.& Tech.
80. S. Y. Wu, C. C. Yang, F. C. Tsao, W.-H. Li,K. C. Lee, J. W. Lynn, and H. D. Yang, Crystal structure and magnetic ordering of Mn and Ce in La0.7Ce0.15Ca0.15MnO3, J. Phys.: Cond. Matt. 14, 12585-12597 (2002).
81. C. C. Yang, S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn, and C.-G. Wu, Magnetic ordering of Fe in NCH5-intercalated iron phosphate Fe(OH)PO4, Physica B 325, 240-245 (2003).
82. C. C. Yang, F. C. Tsao, S. Y. Wu, W.-H. Li, and K. C. Lee,Enhanced critical magnetic field in superconducting Pb nanoparticles, J. Low Temp. Phys. 131, 349-352 (2003).
83. S. Y. Wu, C. C. Yang, F. C. Tsao, W.-H. Li, K.C. Lee, and H. D. Yang,Magnetic order and superconductivity in Eu1.5Ce0.5RuSr2Cu2O10, J. Low Temp. Phys. 131, 693-697 (2003).
84. W.-H. Li, S. Y. Wu, C. C. Yang, F. C. Tsao, S. K. Lai, and K. C. Lee, Quantum thermal contraction of Au nanoparticles, Synthetic Metals 135-136, 811-812 (2003).
85. H. D. Yang, I. P. Hong, F. H. Hsu, H. H. Li, S. Y. Tu, H. L. Huang, S. Chatterjee,S. Mollah,Y.-K. Kuo, T. I. Hsu, H. C. Ku, and W.-H. Li, Low temperature specific heat of bi-layered manganites La2-2xSr1+2xMn2O7(x=0.3 and 0.5), Solid State Commun. 27, 229-232 (2003).
86. S. Mollah, H. L. Huang, S. J. Liu, P. L. Ho, W. L. Huang, C. W. Huang, C. P. Sun, J.-Y. Lin, Y. S. Gou, W.-H. Li, and H. D. Yang, Electronic and magnetic instability in Pr0.65Ca0.25Sr0.1MnO3, J. Magn. Magn. Mat.265, 215-221 (2003).
87. W.-H. Li, C. C. Yang, F. C. Tsao, and K. C. Lee, Quantum size effects on the superconducting parameters of zero-dimensional Pb nanoparticles, Phy. Rev. B. 68, 184507 (2003) and Nov. 24, 2003 issue of Virtual J. of Nanoscale Sci. & Tech.
88. C. C. Yang, F. C. Tsao,S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn,andR. S. Liu,Short range magnetic correlations in spinel Li(Mn0.976Co0.024)2O4, J. Magn. Magn. Mat. 272-276, 833-834 (2004).
89. F. C. Tsao, P. J. Huang, C. C. Yang, S. Y. Wu, W.-H. Li, K. C. Lee, J. W. Lynn,andH. C. Ku, Mn magnetic ordering in fully oxygenated LuMnO3, J. Magn. Magn. Mat. 272-276, 1778-1779 (2004).
90. P. J Huang, C. C. Yang, F. C. Tsao, W.-H. Li, J. W. Lynn, and Y. Y. Chen, Neutron diffraction studied of Ce magnetic ordering in (Ce1-xLax)3Al, J. Magn. Magn. Mat. (2004).
91. S. K. Lai, W. D. Lin, K. L. Wu, W.-H. Li, and K. C. Lee, Specific heat and Lindemann-like parameter of metallic clusters: mono-and polyvalent metals, J. Chem. Phys. 121, 1487-1498 (2004).
92. Y. H. Lee, M. S. Guo, C. S. Wur, P. C. Lin, and W.-H. Li, Magnetoresistance of FePt nanograins embedded in carbon matrix, J. Magn. Magn. Mat. 286, 113-118 (2005).
93. P. J. Huang, S. Y. Wu, F. C. Tsao, C. C. Yang, M. K. Chung, W.-H. Li, J. W. Lynn, and H. C. Ku, Mn magnetic ordering in fully oxygenated Lu1-xScxMnO3 (x=0, 0.5, and 1), J. Appl. Phys. 93, 10H703 (2005).
94. S. Y. Wu, C. C. Yang, F. C. Tsao, P. J. Huang, M. K. Chung, and W.-H. Li, Tunneling magnetoresistance in Ag/Co nanoparticle composites,J. Magn. Magn. Mat.294, e83-e86 (2005).
95. W.-H. Li, S. Y. Wu, P.-C. Lin, P. J. Huang, F. C. Tsao, M. K. Chung,C. C. Yang, and Y. D. Yao, Transport characteristics and unconventional magnetoresistance in nonmagneticAg/PbOnanocompacts, Phys. Rev. B 72, 113406-1 to 113406-4 (2005).
96. W.-H. Li, C. C. Yang, F. C. Tsao, S. Y. Wu,P. J. Huang, M. K. Chung, and Y. D. Yao, Enhancementof superconductivity by the small size effectin Innanoparticles, Phys. Rev. B 72, 214516-1 to 214516-5 (2005).
97. P. J. Huang, M. K. Chung, C. C. Yang, and W.–H. Li, London penetration depth of zero-dimensional Pb nanoparticles, Chinese J. Phys. 44, 62-66 (2006).
98. C. C. Yang,S. F. Lee,Y. D. Yao,W-H.Li, K. H. Li, and J. W. Lynn, Magnetic structures of [Co3(pyz)(HPO4)2F2], a Fluorinated Cobalt Phosphate with a Pillared Layer Structure,Physica B 378-380, 1140 (2006).
99. C. C. Yang, M. K. Chung, S. Y. Wu, W.-H. Li, Y. D. Yao, J. W. Lynn, T. S. Chan, and R. S. Liu, Magnetic order and spin fluctuations in Ni-rich Li0.9Ni1.1O2, Physica B, 385-386, 432-434 (2006).
100. M. K. Chung, P. J. Huang, W.-H. Li, C. C. Yang, T. S. Chan, R. S. Liu, S. Y. Wu, and J. W. Lynn, Crystalline and Magnetic Structures of Sr2FeMoO6Double Perovskites, Physica B, 385-386, 418-420 (2006)
101. S. Y. Wu, M. T.Liao, P. J. Huang, F. C.Tsao, M. K.Chung, C. C.Yang,W.-H.Li, Percolation threshold and tunneling magnetoresistance in Ag/Ni nanocompacts, INTERMAG ASIA 2005: Digests of the IEEE International Magnetics Conference, 527(2006).
102. C. C. Yang, M. K. Chung, W.-H. Li, T. S. Chan, R. S. Liu, Y. H. Lien, C. Y.Huang, Y. Y. Chan, Y. D. Yao, and J. W. Lynn, Magnetic instability and oxygen deficiency in Na-doped TbMnO3, Phys. Rev. B 74, 94409 (2006).
103. S. Y. Wu, Y.-R. Ma, M. T. Liao, and W.-H. Li, Magnetoresistance in two-component Ag/Ni nanocompacts, J. Magn. Magn. Mat.310, 2359-2360 (2007).
104. T.S. Chan, R.S. Liu, C.C. Yang, W.-H. Li, Y.H. Lien, C.Y. Huang and J.W. Lynn, Neutron diffraction study of multiferroic Tb0.85Na0.15MnO3-y,J. Magn. Magn. Mat.310, 1151-1153 (2007).
105. F.-Y. Wu, C. C. Yang, C.-M. Wu, C.-W. Wang, and W.-H. Li,Superconductivity in zero-dimensional Indium nanoparticles, J. Appl. Phys. 101, 09G111-1 to 09G111-3 (2007).
106. S. Y. Wu, W.-H. Li, C. C. Yang, J. W. Lynn, and R. S. Liu, Magnetic ordering of Mn and Ruin (La0.52Ba0.48)(Mn0.51Ru0.49)O3, Phys. Stat. Sol. (b) 244, 2233-2241(2007).
107. T.-S. Chan, R.-S. Liu,C. C. Yang,W.-H. Li, Y. H. Lien, C. Y. Huang, and J. –F. Lee,Chemical size effect on the magnetic and electric properties in the (Tb1-xEux)MnO3(0≦x≦1.0) system,J. Phys. Chem. B111, 2262-2267 (2007)
108. T.-S. Chan, R.-S. Liu,C. C. Yang,W.-H. Li, Y. H. Lien, C. Y. Huang, J. W. Lynn, J.-M. Chen, and H.-S. Sheu, Influence of oxygen defects on the crystal structure and magnetic properties of the (Tb1-xNax)MnO3-y(0≦x≦0.3) system,Inorg. Chem. 46, 4575-4582 (2007).
109. S. C. Hsu, B. J. Pong, W.-H. Li, T. E. Beechem, S. Graham, C. Y. Liu, Stress relaxation in GaN by transfer bonding on Si substrates, Appl. Phy. Lett. 91, 251114-1~251114-3 (2007).
110. C. J. Ho, J. L. Her,C. P. Sun, C. C. Yang, C. L. Huang, C. C. Chou, Lu-Lin Li, K. J. Lin, W.-H. Li, J. W. Lynn and H. D. Yang, Neutron diffraction and specificheat studies on magnetic ordering in the [FeII(D)FeII(L)(ox)2(Phen)2]nmolecular magnet, Phys. Rev. B76, 224417-1~224417-8 (2007).
111. C. C. Yang, C-M. Wu, W.-H. Li, T. S. Chan, R. S. Liu, Y. Y. Chen, and M. Avdeev,Effects of oxygen deficiency on the magnetic ordering of Mn in Tb0.9Na0.1MnO2.9, J. Phys.: Condens. Matter20, 104234-1 ~104234-4 (2008).
112. G. T.-K. Fey, T.-L. Lu, F.-Y. Wu, and W.-H. Li, Carboxylic acid-assisted solid-state synthsis of LiFePO4/C composites and their electrochemical properties as cathode materials for lithium-ion batteries, J. Solid State Electrochemistry 12, 825~833 (2008).
113. W.-H. Li, C.-W. Wang, C.-Y. Li, C. K.Hsu,C. C.Yang,and C.-M. Wu, Coexistence of Ferromagnetism and Superconductivity in Sn Nanoparticles, Phys. Rev. B. 77, 094508-1~094508-7 (2008) andMarch 24, 2008 issue of Virtual Journal of Nanoscale Science & Technology.
114. V. Yeh, S. Y. Wu, and W.-H. Li, Measurements of superconducting transition temperature Tc of Sn nanoparticles, Colloids & Surfaces A 313-314, 246~249 (2008).
115. S. Y. Wu, J. -Y. Ji, M. H. Chou, W.-H. Li, and G. C. Chi, Low-temperature phase separation in GaN nanowires: an in situ x-ray investigation, Appl. Phy. Lett. 92, 161901-1~161901-3 (2008).
116. L. J. Chang, D. J. Huang, W.-H. Li, S.-W. Cheong, W. Ratcliff, and J.W. Lynn, Crossover from incommensurate to commensurate magnetic orderings in CoCr2O4, J Phys. Condens. Matter, 21, 456008 (2009).
117. Shir-Ly Huang, Yuan-Chang Hsu, Chun-Ming Wu, Jeffrey W. Lynn, and Wen-Hsien Li, Thermal effects on the activity and structural conformation of catechol 2, 3-dioxygenase from Pseudomonas putida SH1, J. Phys. Chem. B 114, 987-992 (2010).
118. C.-M. Wu,C.-Y. Li, Y.-T. Kuo, C.-W. Wang, S. Y. Wu, and W.-H. Li,Quantum spins in Mackayicosahedral gold nanoparticles, J. Nanopart. Res. 12, 177-185 (2010).
119. C.-H. Hung, P.-H. Shih,F.-Y. Wu, W.-H. Li, S. Y. Wu,T. S. Chan, and H.-S. Sheu,Spin-phonon coupling effects in antiferromagnetic Cr2O3nanoparticles, J. Nanoscience and Nanotechnology, 10, 4596-4601(2010).
120. Chun-Chuen Yang, Wen-Hsien Li,Chun-Ming Wu, Carissa H. C. Li, Jirong Sun, and Jeffrey W. Lynn,Interplay between the crystalline and magnetic structures in lightly Cr-doped Bi0.37Ca0.63Mn0.96Cr0.04O2.99, Inorg. Chem 49, 3297-3304 (2010).
121. Chin-Wei Wang, Chun-Ming Wu, Chi-Yen Li, Sunil K. Karna, Chien-Kang Hsu, Carissa H. C. Li, Wen-Hsien Li, Chun-Chen Yu, Chun-Pin Wu, Hsiung Chou, and Jeffrey W. Lynn,Short range magnetic correlations induced by La substitution in Ho1-xLaxMn2O5, J. Phys. Condens. Matter, 22, 246002(2010).
122. W.-H. Liand C.-M. Wu, Reply on “Comments on‘Coexistence of Ferromagnetism and Superconductivity in Sn Nanoparticles’”, Phys. Rev. B82,016504 (2010).
123. I. Jarrige, Y. Q. Cai, S. R. Shieh, H. Ishii, N. Hiraoka, S. Karna, and W.-H. Li, Charge transfer in FeOCl intercalation compounds and its pressuredependencies: An x-ray spectroscopic study, Phys. Rev. B 82, 165121 (2010).
124. George Ting-Kuo Fey, Kai-Pin Huang, Hsien-Ming Kao, Wen-Hsien Li, A polyethylene glycol-assisted carbothermal reduction method to synthesize LiFePO4 using industrial raw materials, Journal of Power Sources 196, 2810-1818 (2011).
125. Shih-Bin Liu, Chia-Tang Chen, Chun-Ming Wu, Chin-Wei Wang, Chih-Jen Wang, Sunil K. Karna, and Wen-Hsien Li, Suppression of superconductivity by interparticle interactions in Al nanoparticle assembly, J. Appl. Phys. 109, 07E153 (2011).
126. Chien-Kang Hsu, Daniel Hsu, Chun-MingWu, Chi-Yen Li, Chi-Hang Hung, Chi-Hung Lee, and Wen-HsienLi, Coexistence of Ferromagnetism and Superconductivity in Pb/PbO core/shell nanoparticles,J. Appl. Phys. 109, 07B528 (2011).
127. Sunil K. Karna, Chi-Yen Li, Chun-Ming Wu, Chien-Kang Hsu, Chin-Wei Wang, and Wen-Hsien Li, Observations of large magnetic moments in Icosahedral Pb nanoparticles, J. Phys. Chem.C115, 8906-8910 (2011).
128. Chi-Yen Li,Chun-Ming Wu,Sunil K. Karna,Chin-Wei Wang, Daniel Hsu, Chih-Jen Wang,and Wen-Hsien Li,IntrinsicMagnetic Moments ofGoldNanoparticles, Phys. Rev. B. 83, 174446-174450(2011).
129. Chin-Wei Wang, Chun-Ming Wu, Sunil K. Karna, Chi-Yen Li,Chien-Kang Hsu, Carissa H. C. Li,and Wen-Hsien Li, Electrically controllable metal-insulator-liketransition in nanoparticle compacts,J. Nanopart. Res.13,3405-3412 (2011).
130. Chi-Hung Lee, Chun-Ming Wu, Daniel Hsu, Chin-Wei Wang, Chih-Jen Wang,Wen-Hsien Li, Chun-Chuen Yan, Jirong Sun, Jeffrey W. Lynn, Neutron diffraction study of the Mn spin correlations in Bi0.46Ca0.54Mn0.95Cr0.05O3, J. Phys. Soc. Jpn. 80, SB013-1 to SB013-4(2011).
131. Sunil K. Karna, RamanShankar,Chun-Ming Wu, Chin-Wei Wang, Daniel Hsu, Chih-Jen Wang, Fang Cheng Chou and Wen-Hsien Li, and Interplay between the Crystalline and Magnetic Structures in BiOCu0.94S, J. Phys. Soc. Jpn. 80, SB011-1 to SB011-4 (2011).
132. J. L. Her, C. C. Chou, Y. H. Matsuda, K. Kindo, H. Berger, K. F. Tseng, C. W. Wang, W. H. Li, and H. D. Yang, Magnetic phase diagram of the antiferromagnetic cobalt tellurate Co3TeO6, Phys. Rev. B 84, 235123-1 to 235123-5 (2011).
133. Wen-Hsien Li, Chun-Ming Wu, Chin-Wei Wang, Chi-Yen Li, andChien-Kang. Hsu, Formation of superconductivity through interparticle interactions in ferromagnetic-like Sn nanoparticle assemblies, J. Nanopart. Res.14, 764-772 (2012).
134. Wen-Hsien Li, Chin-Wei Wang, Daniel Hsu, Chi-Hung Lee, Chun-Ming Wu, Chih-ChiehChou, Hung-Duen Yang, Yang Zhao, Sung Chang, Jeffrey W. Lynn, and Helmuth Berger, Interplay between the magnetic and electric degreesof freedom in multiferroic Co3TeO6, Phys. Rev. B 85, 094431 (2012).
135. Sunil K. Karna, Chin-Wei Wang, Chun-Ming Wu,Chien-Kang Hsu,Daniel Hsu, Chih-Jen Wang, Wen-Hsien Li, Raman Sankar,and Fang-Cheng Chou, Spin, charge and lattice couplings in Cu-deficient oxysulphide BiOCu0.94S,J. Phys. Condens. Matter,24266004 (2012).
136. Chun-Ming Wu, Chi-Hung Lee, Chi-Hang Hung, Shih-Bin Liu, Wen-Hsien Li, Enhanced superconducting parameters of zero-dimensional Sn nanoparticles by magnetic proximities, J.Sup. Nov. Mag. 26, 2589-2591, (2013). DOI 10.1007/s10948-013-2140-5.
137. Chun-Ming Wu,Sunil K. Karna,Shih-Bin Liu,Chi-Hung Lee,Chin-Wei Wang, Wen-Hsien Li,Inverse magnetic proximity effects in superconducting In-Ni and Sn-Ni nanoparticle assemblies,J. Nanopart. Res.15, 1691(2013).DOI 10.1007/s11051-013-1691-5.
138. Sunil K. Karna, Wen-Hsien Li, Chun-Ming Wu, Chin-Wei Wang, Chi-Yen Li, Raman Sankar, and Fang Cheng Chou, Magnetic-field tunable negative thermal expansion in layered oxyselenideBiOCuSe,J. Phys. Soc. Jpn. 82, 094705 (2013).
139. Chi-Hang Hung, Chi-Hung Lee, Chien-Kang Hsu, Chi-Ye Li,Sunil K. Karna, Chin-Wei Wang, Chun-Ming Wu,Wen-Hsien Li,Unusual large magnetic moments in the normal state and superconducting state of Sn nanoparticles, J. Nanopart. Res.15, 1905(2013).DOI 10.1007/s11051-013-1905-9.
140. Chi-YenLi, Sunil K. Karna, Chin-WeiWang, and Wen-HsienLi,Spin Polarization and Quantum SpinsinAu Nanoparticles, Int. J. Mol. Sci. 14(9), 17618~17642 (2013).
141. Anna Sokolova, Shir-Ly Huang, Anthony Duff, Elliot Paul Gilbert, Wen-HsienLi, Correlation of thermostability and conformational changes of catechol 2,3-dioxygenases from two disparate micro-organisms, Biophy. Chem. 180-181, 145~152 (2013).
142. Sunil K. Karna, Chi-Hang Hung, Chun-Ming Wu, Chin-Wei Wang, Wen-Hsien Li, Raman Sankar, Fang Cheng Chou, and Maxim Avdeev, Large magnetoresistance and charge transfer between the conduction and magnetic electrons inlayered oxyselenide BiOCu0.96Se, Dalton Transactions42, 15581~15590(2013).
143. Chin-Wei Wang, Chi-Hung Lee, Chi-Yen Li, Chun-Ming Wu, Wen-Hsien Li,Chih-Chieh Chou, Hung-Duen Yang, Jeffrey W. Lynn, QingzhenHuang, A. Brooks Harris,and Helmuth Berger, Complex magnetic couplings in Co3TeO6,Phys. Rev. B 88, 184427-1~184427-12(2013).
144. Guogang Li, Chun-Che Lin, Wei-Ting Chen, Maxim S. Molokeev,Victor V. Atuchin,Chang-Yang Chiang, Wuzong Zhou, Chin-Wei Wang, Wen-Hsien Li, Hwo-Shuenn Sheu, Ting-Shan Chan, Chonggeng Ma, and Ru-ShiLiu, Photoluminescence Tuningvia Cation Substitutionin OxonitridosilicatePhosphors: DFT Calculations, Different Site Occupations,and Luminescence Mechanisms, Chem. Mater. 26, 2991-3001(2014).
145. Chi-Hung Lee,Chi-Yen Li, Sunil K. Karna, Erdembayalag Batsaikhan, Shih-Bin Liu, Chi-Hang Hung, and Wen-Hsien Li, Remarkable enhancement of magnetization in the superconducting state of In/Ni nanoparticle composites by inhomogeneous spin anti-screening, J. Nanopart. Res.16, 2447(2014). DOI 10.1007/s11051-014-2447-6.
146. Sunil K. Karna, Han Hsu, Chi-Yen Li, Shin-Bin Liu, Chi-Hung Lee,Wen-Hsien Li, Raman Sankar, and Fang Cheng Chou, Direct interplaybetween superconductivity and ferromagnetisminFe1+y(Te0.5Se0.5), J. Phys. Soc. Jpn.83, 074709 (2014).DOI: 10.7566/JPSJ.83.074709
147. Kuo-Chih Shih, Chi-Yen Li, Wen-Hsien Li, and Hsi-Mei Lai,Fine structures of self-assembled beta-cyclodextrin/Pluronicin dilute and dense systems: a small angle x-ray scattering study, Soft Matter10, 7606-7614(2014).DOI: 10.1039/C4SM01147C
148. Wen-Hsien Li, Sunil K. Karna, Han Hsu, Chi-Yen Li, Chi-Hung Lee,Raman Sankar, and Fang Cheng Chou, Development of a ferromagnetic component in the superconducting state of Fe-excess Fe1.12Te1-xSexby electronic charge redistribution, Sci. Rep. 5, 10951(June, 2015).DOI: 10.1038/srep10951
149. Chen-Chen Kuo, Chi-Yen Li, Chi-Hung Lee, Hsiao-Chi Li, andWen-Hsien Li, Huge inverse magnetizationgenerated by Faraday induction in nano-sized Au/Ni core/shell nanoparticles, Int. J. Mol. Sci.16, 20139-20151 (Aug. 2015). doi:10.3390/ijms160920139
150. Sunil K. Karna, Chi-Hung Lee,Wen-Hsien Li, Raman Sankar, Fang-Cheng Chou, Maxim Avdeev, Fe-excess Ions as Electronic Charge Suppliers for Zero Thermal Expansion in the Normal State of Fe1.16Te0.6Se0.4, J. Phys. Soc. Jpn.84, 094713-1~094713-6 (2015).doi:10.7566/JPSJ.84.094713
151. Erdembayalag Batsaikhan, Yen-Cheng Chen, Chi-Hung Lee, Hsiao-Chi Li,and Wen-Hsien Li, Development of ferromagnetic superspinsin bare Cu nanoparticlesby electronic charge redistribution, Int. J. Mol. Sci.16, 23165-23176 (Sept. 2015). doi:10.3390/ijms161023165.
152. Chi-Hung Lee, Chun-Ming Wu, Erdembayalag Batsaikhan, Hsiao-Chi Li, Carissa H. Li, Marcus K. Peprah,Daniel R. Talham,Mark W. Meisel, and Wen-Hsien Li,Complex Magnetic Phases in Nano-sized Core@Shell Prussian Blue Analogue Cubes: Rb0.48Co[Fe(CN)6]0.75[(H2O)6]0.25·0.34H2O@K0.36Ni[Cr(CN)6]0.74[(H2O)6]0.26·0.11H2O, J. Phys. Chem. C, 119, 29138-29147(Dec. 2015).
153. Po-Hsun Shih, Wen-Hsien Li, Sheng Yun Wu, Surface Spin Polarization Induced Ferromagnetic Ag Nanoparticles. Journal of Magnetism and Magnetic Materials 406, 30-34, (Dec. 2015);. DOI:10.1016/j.jmmm.2015.12.094
154. Daoyong Cong,Kirrily Rule, Wen-Hsien Li, Chi-Hung Lee,Qinghua Zhang, Haoliang Wang,Yulin Hao, Yandong Wang,and E-Wen Huang,Confined martensitic phase transformation kinetics and lattice dynamics in Ni-Co-Fe-Ga shape memory alloys, Acta Materilia 110, 200-206 (March 2016).
155. Chen W Yen,Chun C Yang, Gopeshwar D Dwivedi,Kung S Yang,C P Wu; K C Liu; Wen-HsienLi, Oxygen deficiency-induced anomalous enhancement ofNeel temperature and magnetic coupling for Bi0.9Ca0.1FeO3-δand Bi0.9Pb0.1FeO3-δ, Acta Materilia 111, 297-304 (April 2016).
156. Wen-Hsien Li, Chi-Hung Lee, and Chen-Chen Kuo, Engineering and Scaling the Spontaneous Magnetization Reversal of Faraday Induced Magnetic Relaxation in Nano-Sized Amorphous Ni Coated on Crystalline Au, Materials 9, 426 (May 2016); doi:10.3390/ma9060426.
157. C.-M.Wu;G. Deng,J. S. Gardner,P.Vorderwisch,W.-H. Li, S. Yano,J.-C. Peng,E. Imamovic,SIKA-the multiplexing cold-neutron triple-axis spectrometer at ANSTO, Journal of Instrumentation, 11, P10009, 1-17(Oct. 2016); doi:10.1088/1748-0221/11/10/P10009
158. Wen-Hsien Liand Chi-Hung Lee, Spin polarization and small size effect in bare silver nanoparticles, in Complex Magnetic Nanostructures Synthesis, Assembly and Applications, 195-224 (Springer-Verlag, April, 2017).DOI 10.1007/978-3-319-52087-2.
159. Chi-Hung Lee, Chin-Wei Wang, Yang Zhao, Wen-Hsien Li, Jeffrey W. Lynn, A. Brooks Harris, Kirrily Rule, Hung-Duen Yang, and Helmuth Berger, Complex magnetic incommensurability and electronic charge transfer through the ferroelectric transition in multiferroic Co3TeO6, Sci. Rep. 7, 6437 (August, 2017); DOI:10.1038/s41598-017-06651-9
160. Chi-Hung Lee, Min-Yung Wang, Erdembayalag Batisakhan, Chun-Ming Wu, Chin-Wei Wang, and Wen-Hsien Li,Photo-enhanced ferromagnetism in high K+-containing K-Ni-Cr Prussian blue analogues coated on Rb-Co-Fe nanocubes, ACS Omega 2, 4227-4236 (August, 2017); DOI: 10.1021/acsomega.7b00565.
161. Chun-Ming Wu, Chia-Chin Chang,Maxim Avdeev,Ping-I Peng,Wen-Hsien Li, In operando detection of lithium diffusion behaviors at low temperature in 18650 Li-ion battery anode, Physica B, 551, 305-308, (Dec 15, 2018);https://doi.org/10.1016/j.physb.2018.02.032
162. H. C. Wu, J. K. Yuan, K. D. Chandrasekhar, C. H. Lee,W.-H. Li, C. W. Wang, J. M. Chen, J. -Y. Lin, H. Berger, and H. D. Yang, Observation of charge-transfer-driven antiferroelectricity in 3d-pyrochloremultiferroic Cu2OCl2, Materials Today Physic 8, 34-42 (January, 2019).doi.org/10.1016/j.mtphys.2018.12.003
163. Chi-Hung Lee,Ken-Ming Lin, Yu-Hui Tang, Bo-Yong Wu,Ma-Hsuan Ma, Wen-Hsien Li, High temperature superconductivity at 18 K in nano-sized rhombohedralBi enhanced by Ni-doping, ACS Omega 4(3), 4627-4635 (March, 2019).doi.org/10.1021/acsomega.8b02984
164. Pai-ChunWei, Sriparna Bhattacharya, Yu-Fei Liu, Fengjiao Liu, Jian He, Yung-Shiang Tung, Chun-Chuen Yang, Cheng-Rong Hsing, Duc-Long Nguyen, Ching-Ming Wei,Mei-Yin Chou, Yen-Chung Lai, Tsu-Lien Hung, Syu-You Guan, Chia-Seng Chang, Raphael P. Hermann, Hsin-Jay Wu, Chi-Hung Lee, Wen-Hsien Li, Yang-Yuan Chen, Apparao M. Rao,Thermoelectric figure-of-merit of a fully dense single crystalline SnSe, ACS Omega4(3), 5442-5450(March 2019).DOI:10.1021/acsomega.8b03323
165. Wen-Hsien Li,Chi-Hung Lee, Ma-Hsuan Ma, Ping Jung Huang, Sheng Yun Wu, Fault Dynamics of the 1999 Chi-Chi earthquake: clues from nanometric geochemical analysis of fault gouges, Sci. Rep.9, 5683(1-7),(April, 2019)doi.org/10.1038/s41598-019-42028-w.
166. H. C. Wu, K. N. Denisova, D. Chandrasekhar Kakarla, O. V. Maximova, T. W. Kuo, C. H. Lee, W.-H. Li, H. Berger, C. W. Wang, C. K. Chang, Y. C. Chung, J.-Y. Lin, M. Gooch, C. W. Chu, H. D. Yang, and A. N. Vasiliev, Antiferroelectric antiferromagnetic type-I multiferroic Cu9O2(SeO3)4Cl6, Phys. Rev. B 100, 245119-1~245119-8 (Dec.2019)DOI: 10.1103/PhysRevB.100.245119.
167. Chi-Hung Lee, Ma-Hsuan Ma, Wen-Hsien Li, Pai-Chun Wei, Yang-Yuan Chen, Yang Zhao, Jeffrey W. Lynn, Extremely space and time restricted thermal transport in the high temperature Cmcm phase of thermoelectric SnSe, Materials Today Physics11, 100171(Dec.2019).https://doi.org/10.1016/j.mtphys.2019.100171
168. G. D. Dwivedi, C.-M. Wu, Bo-Yu Chen, S. T. Lin, W.-Z. Qiu, S. J. Sun, Guangyong Xu, J. W. Lynn, J. W. Chiou, C.-H Lee, W.-H. Li, S. Yano, and H. Chou, Magnon profile on SrRuO3 films studied by inelastic neutron scattering, Phys. Rev. B 101, 054403-1~054403-7 (Feb. 2020). DOI: 10.1103/PhysRevB.101.054403
169. Erdembayalag Batisakhan, Chi-Hung Lee, Han Hsu, Chun-Ming Wu, Jen-Chih Peng, Ma-Hsuan Ma, Sangaa Deleg, and Wen-Hsien Li,Largely Enhanced Ferromagnetism in Bare CuO Nanoparticles by Small Size Effect,ACS Omega 5, 3849-3856 (Feb. 2020),https://dx.doi.org/10.1021/acsomega.9b02913
170. Wen-Hsien Li, Chi-Hung Lee, Tsu-Yin Ling, Ma-Hsuan Ma, Pai-Chun Wei, Jr-Hau He, Chun-Min Wu, Jen-Chih Peng, Guangyong Xu, Yang Zhao and Jeffrey W. Lynn, Dual lattice incommensurabilities and enhanced lattice perfection by low temperature thermal annealing in photoelectric (CH3NH3)PbBr3,Phys. Rev. Materials, 5, 025401 (1, January, 2021), DOI:https://doi.org/10.1103/PhysRevMaterials.5.025401.
171. Chi‐Hung Lee, Erdembayalag Batsaikhan, Ma‐Hsuan Ma, Wen‐Hsien Li, Chin‐Wei Wang, Chun-Min Wu, Hung‐Duen Yang, Jeffrey W. Lynn, Helmuth Berger, Charge transfer enhanced magnetic correlations in type‐II multiferroic Co3TeO6, J. Chin. Chem. Soc. 68, 395-402(April2021), https://doi.org/10.1002/jccs.202000472.
172. Ma-Hsuan Ma, Chun-Min Wu, Tsu-Yin Ling, Erdembayalag Batsaikhan, Wen-Hsien Li, Vankayala Krishna Ranganayakulu, Yang-Yuan Chen, Extremely space and time limited phonon propagation from electron-lattice scattering induced by Sb/Bi codoping in Ge0.86Sb0.08Bi0.06Te single crystal, Phys. Rev. Materials, 5, 114602(3, Nov., 2021),https://journals.aps.org/prmaterials/pdf/10.1103/PhysRevMaterials.5.114602
173. D. Chandrasekhar Kakarla, Z. H. Yang, H. C. Wu, T. W. Kuo, Ajay Tiwari, W.-H. Li, C. H. Lee, Y.-Y. Wang, J.-Y. Lin, C. K. Chang, B. H. Chen, Chin-Wei Wang, C. A. Lee, Mitch M. C. Choub and H. D. Yang, Single crystal growth and structural, magnetic, and magnetoelectric properties in spin-frustrated bow-tie lattice of a-Cu5O2(SeO3)2Cl2, Mater.Adv., 2,7939-7948(25, Oct, 2021).DOI: 10.1039/d1ma00526j
174. Ma-Hsuan Ma, Erdembayalag Batsaikhan, Huang-Nan Chen, Ting-Yang Chen, Chi-Hung Lee, Wen-Hsien Li, Chun-Ming Wu and Chin-Wei Wang, Non-conventionalsuperconductivity in magnetic In and Sn nanoparticles, Sci. Rep.12:775(Jan. 142022)https://doi.org/10.1038/s41598-022-04889-6.
175. Erdembayalag Batsaikhan, Ma-Hsuan Ma, Chun-Ming Wu, Chun Chuen Yang, Wen-Hsien Li, Boosting the electrochemical performance of Prussian-Blue-analogue based Li-ion rechargeable batteries by Ag and Ni nanoparticles, Inorganic Chemistry Communications, 150, 110509 (Feb. 7, 2023) 10.1016/j.inoche.2023.110509.
176. Ma-Hsuan Ma, Shun-Ji Wu, Erdembayalag Batsaikhan, Chun-Min Wu, Jeng-Der Chung, Ching-Te Chien, Tsai Yu-Han, Wen-Hsien Li, Structural forms of hormone auxins in Madeira vines, J. Chin. Chem. Soc. 1-8 (March 20, 2023) doi.org/10.1002/jccs.202300023.
177. Yang-Yuan Chen, V. K. Ranganayakulu, Te-Hsien Wang, Cheng-Lung Chen, Angus Huang, Ma-Hsuan Ma, Chun-Ming Wu, Wei-Han Tsai, Tsu-Lien Hung, MIN-NAN OU, Horng-Tay Jeng, Chih-Hao Lee, Kuei Hsien Chen, Wen-Hsien Li, Madison Brod, G. Snyder, Ultrahigh zT from strong electron-phonon interaction and low-dimensional Fermi surface, Energy and Environment Science, (submitted 2023).
178. Erdembayalag Batsaikhan, Chun Chuen Yang, Ma-Hsuan Ma, Cheng-Yu Tsai, Chih-Hsuan Chang and Wen-Hsien Li, Enhanced electrochemical cycle stability by Ag and Ni nanoparticles in Prussian Blue based Li-ion storage cathodes, Materials Letters. (submitted, 2023).
179. Ma-Hsuan Ma, Erdembayalag Batsaikhan, Chun-Ming Wu, Chih-I Luo, Ni-Jhen Chen, Jeng-Der Chung, Ching-Te Chien, Yu-Han Tsai, Wen-Hsien Li, Halogenation of IAA by touch stimulus for rapid and differential growths of the Madeira vine, BMC Plant Bio. (submitted, 2023).