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个人简介

Education (教育) 2004.7 Hunan Normal University, Bachelor degree 2007.7 Hunan Normal University, Master degree 2013.7 Hunan University, PHD, Materials Physics and Chemistry Work experience (工作经历) 2013. 7~now Hunan Normal University, School of physics and electronics 2013.11~2015.11 University of Alberta, Chemistry Materials Engineering, Postdoc research fellow Teaching (教学) University physics 《大学物理》 (Spring 2016, Spring 2017, Spring 2018); Solid states physics 《固体物理》 (Spring 2017, Spring 2018); Computational physics 《计算物理》 (August 2018, August 2019) For master students. Thermodynamics and Statistical Mechanics 《热力学与统计物理》(Spring 2019, Spring 2020) Funding (主持项目) National Natural Science Foundation of China (国家自科面上项目) (General program 51671086) Hunan Provincial Natural Science Foundation of China (湖南省青年基金) (2016JJ3089) (结题) Excellent youth funding of Hunan Provincial Education Department (湖南省教育厅优秀青年项目) (16B151).(结题) Key funding of Hunan Provincial Education Department(湖南省教育厅重点项目),2020-2022 Project from China Institute of Atomic Energy. 教学情况 1. 本科生《大学物理》University Physics 2016 2017 2018 2. 本科生《固体物理》Solid States Physics 2016 2017 2018 3. 研究生《计算物理》与刘红荣老师和陈明星老师合上,2018年秋季,2019年秋季,2020年秋季 4. 研究生《表面物理》2018年春季,2019年春季,2020年春季 5. 本科生《热力学与统计物理》2019年春季,2020年春季 承担课题 1. National Natural Science Foundation of China (国家自科面上项目) (General program 51671086) 2. Hunan Provincial Natural Science Foundation of China (湖南省青年基金) (2016JJ3089) 3. Excellent youth funding of Hunan Provincial Education Department (湖南省教育厅优秀青年项目) (16B151). 4. Project from China Institute of Atomic Energy.

研究领域

Aluminum and magnesium light-weight alloys. We use first-principles calculations to study the twinning, stacking fault, evolution of precipitation and LPSO in the alloys. Inspired by teaching statistical mechanics, we are doing some rechearch on entropy related topics, such as high-entropy alloys and complex network. 2D materials, bandgap and edge state control, carrier mobility, Ramma, and Phonon.

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. W. Gong, L. Li, P. Gong, Y. Zhou, Z. Zhang, W. Zhou, W. Wang*,Z. Liu*, D. Tang, Raman investigation of layered ZrGeTe4 semiconductor,Appl. Phys. Lett., 114 (2019) 172104. 2. Heyu Zhu, Xinfu He andZiran Liu*, The preferred slip plane of nuclear material of Hafnium: A first-principles study,Computational Materials Science, 157 (2019) 25-30. 3. A. Zhang, L. Cao, G. Liu,Z. Liu*, W. Liao andG. Zhou*, The spintronic functionality in a junction of naphthalene diimide with different molecule-graphene linkers,Journal of Magnetism and Magnetic Materials, 471 (2019) 555-560. 4. S. Liu andZ. Liu*, Hybridization induced metallic and magnetic edge states in noble transition-metal-dichalcogenides of PtX2 (X = S, Se) nanoribbons, Phys. Chem. Chem. Phys., 20 (2018) 21441. 5. H. Zhu, S. Liu,Z. Liu*, D. Li, Tailoring the stability of twins in magnesium with solute segregation at the twin boundary and strain path control,Computational Materials Science, 152 (2018) 113-117. 6. S. Liu, H. Zhu,Z. Liu*, G. Zhou, Symmetrical metallic and magnetic edge states of nanoribbon from semi-conductive monolayer PtS2,Phys Lett A, 382 (2018) 776-780. 7. L. Cao, X. Li, G. Liu,Z. Liu*,G. Zhou*, The spin-charge transport properties for a graphene-based molecular junction: A first-principles study,Organic Electronics, 48 (2017) 357-364. 8. S.B. Wang,Z.R. Liu, S.L. Xia, J. Key, J.H. Chen*, Tetragonal-prism-like Guinier–Preston–Bagaryatsky zones in an AlCuMg alloy,Materials Characterization, 132 (2017) 139-144. 9. H. Lu,Z. Liu, X. Yan, D. Li*, L. Parent, H. Tian, Electron work function–a promising guiding parameter for material design,Scientific reports, 6 (2016) 24366. 10.Z.-R. Liu, D.-Y. Li*, Stability and formation of long period stacking order structure in Mg-based ternary alloys,Computational Materials Science, 103 (2015) 90-96. 11.Z.R. Liu, D.Y. Li*, The electronic origin of strengthening and ductilizing magnesium by solid solutes,Acta Materialia, 89 (2015) 225-233. 12. W.L. Chen, C.L. Wu*,Z.R. Liu, S. Ni, Y. Hong, Y. Zhang, J.H. Chen*, Phase transformations in the nitrocarburizing surface of carbon steels revisited by microstructure and property characterizations,Acta Materialia, 61 (2013) 3963-3972. 13. S.B. Wang, J.H. Chen*, M.J. Yin,Z.R. Liu, D.W. Yuan, J.Z. Liu, C.H. Liu, C.L. Wu, Double-atomic-wall-based dynamic precipitates of the early-stage S-phase in AlCuMg alloys,Acta Materialia, 60 (2012) 6573-6580. 14.Z.R. Liu, J.H. Chen*, S.B. Wang, D.W. Yuan, M.J. Yin, C.L. Wu, The structure and the properties of S-phase in AlCuMg alloys,Acta Materialia, 59 (2011) 7396-7405. 15. T. Hu, J.H. Chen*, J.Z. Liu,Z.R. Liu, C.L. Wu, The crystallographic and morphological evolution of the strengthening precipitates in Cu–Ni–Si alloys,Acta Materialia, 61 (2013) 1210-1219.

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