副教授

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項紅萍 副教授

發布日期:2017-09-06  來源:   點擊量:

 

 

基本信息:

姓名:項紅萍
職稱:副教授/博導
電子郵箱:
xianghp@tongji.edu.cn

辦公地點:嘉定校區德才館450
電話:

研究方向:

1.    發展高通量高效的多尺度材料計算方法和軟件。

2.    跨尺度研究金屬納米粒子及其陣列表面等離子體振蕩。

3.    設計超高速激光誘導的量子邏輯,量子信息存儲磁性納米材料。

4.    電、磁功能材料結構設計、性質預測以及機制解析。

學習工作經曆:

2003/9-2008/7    中國科學院長春應用化學研究所           博士學位

2008/10-2010/3    德國亞琛工業大學無機化學學院           博士後

2010/4-2012/6     德國凱澤斯勞滕工業大學物理系           博士後

2012/7-2014/12    美國加州州立大學北鄰分校物理系         博士後

2015/1-2017/3     中國科學院福建物質結構研究所           副研究員

2017/4-至今       伟德网站是多少             副教授

代表性論文:

1.         Xiang H. P., Zhang X., Neuhauser  D., Lu G., Size-dependent plasmonic resonances from large-scale quantum  simulations.Journal of Physical  Chemistry Letters5, 1163 (2014).            

2.         Xiang H. P., Zhang M. L. Zhang X.  Lu G. Understanding Quantum Plasmonics from Time-Dependent Orbital-Free  Density Functional Theory.Journal  of Physical Chemistry C120, 14330(2016).

3.         Zhang M. L.Xiang. H. P., Zhang X. Lu G.  Quantum electrodynamics and plasmonic resonance of metallic nanostructures.Journal of Physics: Condensed Matter28,155302 (2016).            

4.         Chaudhuri,  D.,Xiang H. P., Lefkidis, G., Huebner, W.,  Laser-induced ultrafast spin dynamics in di-, tri- and tetranuclear nickel  clusters, and the M process.Physical  Review B90, 245113(2014).            

5.         Xiang H. P.*, Lefkidis  G., Hübner W., First-principles study of the ultrafast, laser-induced spin  transferability in the multi-center magnetic cluster Ni3Na2.Journal of Superconductivity and  Novel Magnetism26,  2001 (2013).            

6.         Xiang H. P.*, Lefkidis G., Hübner W. Unified theory of ultrafast  femtosecond and conventional picosecond magnetic dynamics in the distorted  metallic three-center magnetic cluster Ni3Na2.Physical Review B86, 134402 (2012).            

7.         Tang X. J.,Xiang H. P., Liu X. H., Dronskowski R. A ferromagnetic  carbodiimide: Cr2(NCN)3.Angewandte Chemie122,  4846 (2010).

8.         Xiang H. P., Dronskowski  R., Eck B., Tchougreeff A L. Influence of Coulomb correlation and  spin-orbital coupling on the electronic and magnetic structures of MNCN (M =  Fe, Co, Ni).Journal of Physical  Chemistry A114,  12345 (2010).            

9.         Xiang H. P., Liu X. H.,  Dronskowski R. A theoretical re-investigation of the electronic structure of  CuNCN: the influence of packing on the magnetic properties.Journal of Physical Chemistry C113, 18891(2009).

10.       Zhang S. Y.,Xiang  H. P.*, Guo W. B., Tang Y. Y., Cui M. Y., He Z. Z. Synthesis,  characterization, and mechanism analysis ofS= 2 quasi-one-dimensional ferromagnetic semiconductor Pb2Mn(VO4)2(OH).Dalton Transactions45,  7022 (2016).

11.       Xiang H. P.*,Tang Y. Y., Zhang S. Y., He Z. Z.Intra-chain  superexchange couplings in quasi-1D 3dtransition-metal magnetic  compounds.Journal of Physics:  Condensed Matter28,276003  (2016).

12.       Xiang H. P., Wu Z. J.,  Ab initio study on the electronic, magnetic and mechanical properties of CaCu3V4O12.Inorganic Chemistry47,  2706 (2008).            

13.       Xiang H. P., Liu X. J.,  Zhao E. J., Meng J., Wu Z. J., Magnetic and electronic properties of CaCu3Cr4O12and CaCu3Cr2Sb2O12by  first-principles density functional calculation.
Inorganic Chemistry46,  9575 (2007).            

14.       Xiang H. P., Liu X. J.,  Zhao E. J., Meng J., Wu Z. J., Ferrimagnetic and half-metallic CaCu3Fe4O12:  Prediction from first principles investigation.Applied Physics Letters91, 011903(2007).            

15.       Xiang H. P., Liu X. J.,  Zhao E. J., Meng J., Wu Z. J., First-principles study on the conducting  mechanism of the heavy-fermion system CaCu3Ru4O12.Physical Review B76,  155103 (2007).            

 

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