简历: |
(1)1993-2000年就读东北大学,1997年获学士学位,2000年获硕士学位。 (2)2000-2004年在中国科学院金属研究所读博士研究生,2004年获博士学位。 (3)2002年6月至2003年6月在韩国材料科学研究所合作研究。 (4)2004年3月至2007年9月在金属研究所任助理研究员; (5)2006年7月至8月到意大利国际理论物理中心(ICTP)访问学习。 (6)2007年9月至2011年9月在金属研究所任副研究员; (7)2010年7月至2011年1月,获科学院公派留学资助,到美国纽约州立大学布法罗分校物理系访问。 (8)2011年9月至今,中科院金属研究所磁性材料与磁学研究部项目研究员。 |
研究领域: |
(1) 直流电弧等离子体法制备具有壳/核微观结构的金属纳米胶囊,研究纳米材料中的新物理现象和新性能(磁性、 输运性质、微波吸收性质等),拓展纳米材料的应用。 (2) 化学液相法控制合成纳米结构磁性材料、设计基于磁性的多功能复合材料并研究其相关性质。 |
(1) H. Wang, H.H. Guo, Y.Y. Dai, D.Y. Geng, Z. Han, D. Li, T. Yang, S. Ma, W. Liu, Z.D. Zhang, Optimal electromagnetic-wave absorption by enhanced dipole polarization in Ni/C nanocapsules, Appl. Phys. Lett. 101 (8), 081337, (2012).
(2) J.H.Wang, H.Wang,J.J.Jiang, W.J.Gong, D.Li, Q.Zhang, X.G.Zhao, S.Ma, Z.D.Zhang, Nonpolar solvothermal fabrication and electromagnetic properties of magnetic Fe3O4 encapsulated semimetal Bi nanocomposites, Crystal Growth & Design 12, 3499-3504 (2012).
(3) J.J. Jiang, H. Wang, H.H. Guo, T. Yang, W.S. Tang, D. Li, S. Ma, D.Y. Geng, W. Liu and Z.D. Zhang,Microwave absorption properties of Ni/(C, silicides) nanocapsules, Nanoscale Res. Lett. 7, 238 (2012).
(4) G. Long, H.W. Zhang, D. Li, R. Sabirianov, Z.D. Zhang, H. Zeng, Magnetic anisotropy and coercivity of Fe3Se4 nanostructures, Appl. Phys. Lett. 99, 202103 (2011).
(5) H. W. Zhang, G. Long, D. Li, R. Sabirianov, and H. Zeng, Fe3Se4 Nanostructures with Giant Coercivity Synthesized by Solution Chemistry, Chem. Mater. 23, 3769 (2011).
(6) D. Li, J.J. Jiang, W. Liu, Z.D. Zhang,Positive magnetoresistance in Fe3Se4 nanowires, J. Appl. Phys. 109, 07C705 (2011).
(7) Z. Han, D. Li, X.W. Wang, Z.D. Zhang,Microwave response of FeCo/carbon nanotubes composites, J. Appl. Phys. 109, 07A301 (2011).
(8) J.L. Yang, W.J. Ren, D. Li, Z.D. Zhang, Structural evolution of Ce1-xGdxFeAsO0.84F0.16 superconductors, J. Appl. Phys. 109, 07E154 (2011).
(9) X.L. Wang, T.Y. Cui, F. Cui, Y.J. Zhang, D. Li, Z.D. Zhang,Facile access to ultrasmall Eu2O3 nanoparticle-functionalized hollow silica nanospheres based on the spontaneous formation and decomposition of a cross-linked organic/inorganic hybrid core, Chem. Commun. 47, 6329 (2011).
(10) Z. Han, D. Li, M. Tong, X. Wei, R. Skomski, W. Liu, Z.D. Zhang, Permittivity and permeability of Fe(Tb) nanoparticles and their microwave absorption in the 2-18 GHz range, J. Appl. Phys. 107, 09A929 (2010).
(11) X.L. Wang, D. Li, T.Y. Cui, P. Kharel, W. Liu, Z.D. Zhang,Magnetic and optical properties of multiferroic GdMnO3 nanoparticles, J. Appl. Phys. 107, 09B510 (2010).
(12) Z. Han, D. Li, H. Meng, X.H. Liu, Z.D. Zhang, Magnetocaloric effect in terbium diboride, J. Alloys & Comp. 498, 118-120 (2010).
(13) D. Li, C.J. Choi, Z. Han, X.G. Liu, W.J. Hu, J. Li, Z.D. Zhang,Magnetic and electromagnetic wave absorption properties of alpha-Fe(N) nanoparticles, J. Magn. Magn. Mater. 321, 4081 (2009).
(14) D. Li, Z. Han, J.G. Zheng, Z.D. Zhang, Spin canting and spin-flop transition in antiferromagnetic Cr2O3 nanocrystals, J. Appl. Phys. 106, 053913 (2009).
(15) Z. Han, D. Li, H. Wang, X.G. Liu, J. Li, D.Y. Geng and Z.D. Zhang, Broadband electromagnetic-wave absorption by FeCo/C nanocapsules, Appl. Phys. Lett. 95, 023114 (2009).
(16) Z. Han, D. Li, X.G. Liu, D.Y. Geng, J. Li and Z.D. Zhang,Microwave absorption properties of Fe(Mn)/ferrite nanocapsules, J. Phys. D: Appl. Phys. 42, 055008 (2009).
(17) Z.H. Wang, D. Li, D.Y. Geng, S. Ma, W. Liu, Z.D. Zhang,Magnetic and electronic transport properties of nanocomposites of superconducting Mo carbides' nanoparticles embedded in a ferromagnetic carbon matrix, J. Mater. Res. 24, 2229 (2009).
(18) D. Li, Z.Han, B.Wu, D.Y.Geng, Z.D.Zhang, Ferromagnetic and spin-glass behaviour of nanosized oriented pyrolytic graphite in Pb-C nanocomposites, J. Phys. D: Appl. Phys.41,115005,2008.
(19) Z.G. Chen, J.Zou, F.Li, G.Liu, D.M.Tang, D. Li, C.Liu, X.L.Ma, H.M.Cheng, G.Q.Lu, Z.D.Zhang, Growth of magnetic yard-glass shaped boron nitride nanotubes with periodic iron nanoparticles, Adv. Funct. Mater.17,3371-3376,2007.
(20) D. Li, S.Ma, W.F.Li, B.Wu, Z.D.Zhang, Disordering and the electronic transport behaviors of NbC-Al4C3-C composite, J. Mater. Sci.42,6929-6934, 2007.
(21) D. Li, Z.D.Zhang, W.F.Li, W.J.Feng, C.J.Choi, B.K.Kim, Electrical and magnetic properties of e-Fe3N nanoparticles synthesized by chemical vapor condensation process, J. Magn. Magn. Mater.307 (1),128-133, 2006.
(22) W.J.Feng, D. Li, W.J.Ren, Y.B.Li, W.F.Li, J.Li, Y.Q.Zhang, Z.D.Zhang,Glassy ferromagnetism in Ni3Sn-type Mn3.1Sn0.9, Phys. Rev. B73,205105, 2006.
(23) D.Li, W.F.Li, S.Ma, Z.D.Zhang, Electronic transport properties of NbC(C)-C nanocomposites, Phys. Rev. B73,193402,2006.
(24) P.Z.Si, D.Li, J.W.Lee, C.J.Choi,Z.D.Zhang,D.Y.Geng, E.Bruck, Unconventional exchange bias in oxide-coated manganese nanoparticles, Appl. Phys. Lett.87 (13),133122, 2005.
(25) D.Li, D.Y.Geng, Y.T.Xing, W.F.Li, G.W.Qiao, Y.Z.Wang, Z.D.Zhang, Metal-nonmetal transition and the electronic transport behavior in disordered PbO2-Ag2O-xC system synthesized by ball milling, J. Mater. Sci. 40 (5),1087-1091, 2005.
(26) D.Li, C.J.Choi, J.H.Yu, B.K.Kim, Z.D.Zhang, Nanocrystalline a-Fe and e-Fe3N particles prepared by chemical vapor condensation process, J. Magn. Magn. Mater.283 (1),8-15,2004.
(27) D.Li, C.J.Choi, B.K.Kim, Z.D.Zhang, Characterization of Fe/N nanoparticles synthesized by the chemical vapor condensation process, J. Magn. Magn. Mater.277 (1-2),64-70, 2004.
(28) D.Li, Z.D.Zhang, D.Y.Geng, W.F.Li, X.P.Song, G.W.Qiao, Y.Z.Wang, Phase transformation and percolation effect in PbO2-1/12Ag2O-xC system, Solid State Commun.125 (9),493-497,2003.
(29) D.Li, Z.J.Xu, Z.H.Wang, D.Y.Geng, J.S.Zhang, Z.D.Zhang, G.L.Yuan, J.M.Liu, Synthesis and characterization of M-Cl (M-Fe, Co, Ni) boracites, J. Alloys & Compounds351(1-2),235-240,2003.