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南方科技大学物理系导师教师师资介绍简介-石兴强

本站小编 Free考研考试/2021-06-12

石兴强Google Scholar ResearcherID

助理教授 物理系
研究集中在表界面、低维体系的电、磁性质和催化、储能方面,在以上领域发表包括JACS、PRL、PRB、NJP、JCP、JPCC、CM、JMCA、ACSAMI等在内的高档次论文50多篇。被引用次数1000多次,H-index 18。入选深圳市高层次 “孔雀计划”B 类人才,获得校青年科研奖。此外,他还是包括J. Am. Chem. Soc.、Phys. Rev. B、JPCL 等在内的很多国际期刊的审稿人。同时也是Scientific Reports 和Journal of semiconductors 等国内外期刊的编委。http://scholar.google.com/citations?user=v6zE2WQAAAAJ&hl
个人简介个人简介
研究集中在表界面、低维体系的电、磁性质和催化、储能方面,在以上领域发表包括JACS、PRL、PRB、NJP、JCP、JPCC、CM、JMCA、ACSAMI等在内的高档次论文50多篇。被引用次数1000多次,H-index 18。入选深圳市高层次 “孔雀计划”B 类人才,获得校青年科研奖。此外,他还是包括J. Am. Chem. Soc.、Phys. Rev. B、JPCL 等在内的很多国际期刊的审稿人。同时也是Scientific Reports 和Journal of semiconductors 等国内外期刊的编委。http://scholar.google.com/citations?user=v6zE2WQAAAAJ&hl
研究领域
基于密度泛函理论,我们研究: 1)表面、界面及其电子学、自旋电子学应用; 2)低维度体系及其应用(电子器件、能源、催化);3)表面生长、分子自组装。
工作经历
◆ 2012年12月至今,南方科技大学Assistant Professor
◆ 2012年6月至2012年12月,香港浸会大学,博士后
◆ 2007年8月至2012年6月,香港城市大学,研究员
◆ 2010年9月至2010年12月,德国不莱梅大学,客座科学家
学习经历
◆ 2007年,获得中国科学院固体物理研究所博士学位
◆ 2002年,获得河北师范大学物理系学士学位
所获荣誉
2016年,获得南科大青年科研奖
2013年,入选深圳市引进海外高层次“孔雀计划”B类人才
代表文章
(入职南科大后, latest first, updated Mar 2018)
1)Giant magnetic anisotropy of heavy p-elements on high-symmetry substrates: a new paradigm for supported nanostructures, New J. Phys. 2018, Accepted (arXiv:1612.08679)
2)Electronic, Magnetic, Catalytic, and Electrochemical properties of Two-Dimensional Janus Transition Metal Chalcogenides, J. Mater. Chem. A, 2018, Accepted (DOI: 10.1039/C8TA01202D)
3)Preserving half-metallic surface states in CrO$_2$: Insights into surface reconstruction rules, Phys. Rev. B, Accepted, 2018 (https://journals.aps.org/prb/accepted/5f07bYa9Yae14262d06184e459c3231fdf0d73965)
4)Exploring new two-dimensional monolayers: pentagonal transitional metal borides/carbides (penta-TMB/Cs), J. Mater. Chem. A, 2018, Accepted (DOI: 10.1039/C8TA00635K)
5)Fullerene/layered antiferromagnetic reconstructed spinterface: Subsurface layer dominates molecular orbitals’ spin-split and large induced magnetic moment, J. Chem. Phys. 148, 114704 (2018)
6)Atomistic insights into FeF3 nanosheet: An ultrahigh-rate and long-life cathode material for Li-ion batteries, ACS Appl. Mater. Interfaces 10, 3142 (2018)
7)Class of diatomic ferroelectrics with multifunctional properties: IV-VI compounds in the distorted NiAs-type structure, Phys. Rev. B 96, 245136 (2017)
8)N-functionalized MXenes: Ultrahigh carrier mobility and multifunctional properties, PhysChemChemPhys, 19, 28710 (2017)
9)Electronic, Magnetic and Catalytic Properties of Thermodynamically Stable Two-Dimensional Transition Metal Phosphides; Chem. Mater. 29, 8892 (2017)
10)A new insight for Ohmic contacts to MoS2: by tuning MoS2 affinity energies but not metal work-functions; PhysChemChemPhys 19, 26151 (2017)
11)Robust and Pristine Topological Dirac Semimetal Phase in Pressured Two-Dimensional Black Phosphorus; J. Phys. Chem. C 121, 20931 (2017)
12)Manipulating Magnetism at Organic/Ferromagnetic Interfaces by Molecule-Induced Surface Reconstruction; J. Am. Chem. Soc. 138, 4029 (2016)
13)Lithium Intercalation in Graphene/MoS2 Composites: First-Principles Insights; J. Phys. Chem. C, 119, 25860 (2015)
14)Stability of Two-Dimensional Iron-Carbides Suspended across Graphene Pores: First-principles Particle Swarm Optimization; J. Phys. Chem. C, 119, 22954 (2015)
15)Molecular Precursors-Induced Surface Reconstruction at Graphene/Pt(111) Interfaces; J. Phys. Chem. C, 119, 22526 (2015)
16)Engineering Magnetic Hybridization at Organic?Ferromagnetic Interfaces by C60 Adsorption Induced Fe(001) Surface Reconstruction; J. Phys. Chem. C 119, 10532 (2015)
17)Electron transport enhanced by electrode surface reconstruction: A case study of C60-based molecular junctions; RSC Adv. 4, 44718 (2014)
18)Cooperative modulation of electronic structures of aromatic molecules coupled to multiple metal contacts, Phys. Rev. Lett. 110, 046802(2013)

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