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个人简介

教育背景 2005.09-2008.07 山东大学材料科学与工程学院,获材料加工工程博士学位 工作经历 2017.12-至今 电子科技大学基础与前沿研究院,教授 2016.12-2017.12 电子科技大学能源科学与工程学院,教授 2013.11-2016.12 北京计算科学研究中心,中物院成都科学技术发展中心,特聘研究员 2008.09-2013.10 美国加州大学尔湾分校天文与物理学院,博士后

研究领域

采用第一性原理方法,对各类功能材料,包括光伏材料、储能材料、磁性材料、薄膜材料等的结构、力学、磁学、光学及电子性质等进行细致研究。目前主要集中在锂离子电池电极材料(主要是多金属氧化物材料)的结构稳定性和电化学性能、过渡金属硫化物成分、形貌调控与其电催化性能、单原子/分子与各类表面的相互作用等研究领域。擅长与实验组紧密合作,快速抓住各种复杂物理和材料问题的关键,并通过模型分析和计算,对新实验设计提供必要的理论支持。

近期论文

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[1]Y. N. Zhang, J. X. Cao, and R. Q. Wu, “Rigid band model for prediction of magnetostriction of iron-gallium alloys”, Appl. Phys. Lett. 96, 062508 (2010). [2]Y. Jiang, Y.N. Zhang, J.X. Cao, R.Q. Wu, and W. Ho, “Real-space imaging of Kondo screening in a two-dimensional O2 lattice”, Science 333, 324 (2011). [3]Y.N. Zhang, F. Hanke, V. Bortolani, M. Persson and R.Q. Wu, “Why sliding friction of Ne and Kr monolayers is so different on the Pb(111) surface”, Phys. Rev. Lett. 106, 236103 (2011). [4]Y.N. Zhang and R.Q. Wu, “Mechanism of large magnetostriction of Galfenol”, IEEE Trans. Magn. 47, 4044 (2011). [5]Shengyong Qin, Tae-Hwan Kim, Yanning Zhang, Wenjie Ouyang, Hanno H. Weitering, Chih-Kang Shih, Arthur P. Baddorf, Ruqian Wu, and An-Ping Li, “Correlating Electronic Transport to Atomic Structures in Self-Assembled Quantum Wires”, Nano Lett. 12, 938 (2012). [6]Y.N. Zhang, J. Hu, M. Law, and R.Q. Wu, “Effect of surface stoichiometry on the band gap of the pyrite FeS2(100) surface”, Phys. Rev. B, 85, 085314 (2012). [7]Jun Hu, Yanning Zhang, Matt Law, and Ruqian Wu, “Increasing the Band Gap of Iron Pyrite by Alloying with Oxygen”, J. Am. Chem. Soc. 134, 13216 (2012). [8]Y.N. Zhang, H. Wang, and R.Q. Wu, “First principles determination of the rhombohedral magnetostriction of Fe100-xAlx and Fe100-xGax alloys”, Phys. Rev. B 86, 224410 (2012). [9]X. He, W. Zhou, Z.Y. Wang, Y.N. Zhang, J. Shi, R.Q. Wu and J.A. Yarmoff, “Surface Termination of Cleaved Bi2Se3 Investigated by Low Energy Ion Scattering”, Phys. Rev. Lett., 110, 156101 (2013). [10]Y.N. Zhang, V. Bortolani and G. Mistura, “Determination of Corrugation and Friction of Cu(111) toward Adsorption and Motion of Ne and Xe”, Phys. Rev. B 89, 165414 (2014). [11]Y.N. Zhang, V. Bortolani and G. Mistura, “Influence of graphene coating on the adsorption and tribology of Xe on Au(111) substrate”, J. Phys.: Condens. Matter 26, 445003 (2014). [12]S.S. Sasaki, Y.N. Zhang, S. Dey, N. Tallarida, P.Z. El-Khoury, V. Apkarian, and R.Q. Wu, “Intrinsically Conductive Organo-Silver Linear Chain Polymers [–S–Ag–S–biphenyl–]n assembled on Roughened Elemental Silver”, J. Phys. Chem. C 118, 29287-29293 (2014). [13]Y.N. Zhang, “Communication: Surface stability and topological surface states of cleaved Bi2Se3: First-principles studies”, J. Chem. Phys. 143, 151101 (2015). [14]Y.N. Zhang, M. Law, and R. Wu, “Atomistic Modeling of Sulfur Vacancy Diffusion Near Iron Pyrite Surfaces”, J. Phys. Chem. C 119(44), 24859-24864 (2015). [15]WeiWei Liu, M.T. Jin, W.M. Shi, J.G. Deng, Woon-Ming Lau, Y.N. Zhang, “First-Principles Studies on the Structural Stability of Spinel ZnCo2O4 as an Electrode Material for Lithium-ion Batteries”, Sci. Rep., 6 (2016) 36717. [16]Mengting Jin, L.C. Yu, W.M. Shi, J.G. Deng, Y.N. Zhang, “Enhanced Absorption and Diffusion Properties of Lithium on B/N-doped Graphene”, Sci. Rep., 6 (2016) 37911.

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