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周伟
- 教师拼音名称:Zhou Wei
- 出生日期:1982-09-15
- 性别:男
- 职称:副教授
- 所属院系:理学院
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· Y. Tian, W. Zhou, P. Wu, Effect of Ni and Pd Addition on Mechanical, Thermodynamic, and Electronic Properties of AuSn4, Journal of Electronic Materials 45(8) (2016) 4138-4147.
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· L. Sun, W. Zhou, Y. Liu, D. Yu, Y. Liang, P. Wu, Electronic structure and optical properties of Fe-doped SnS2 from first-principle calculations, RSC Advances 6(5) (2016) 3480-3486.
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· 31. L. Sun, W. Zhou, Y. Liu, D. Yu, Y. Liang, P. Wu, Theoretical perspective on the electronic, magnetic and optical properties of Zn-doped monolayer SnS 2, Applied Surface Science 389 (2016) 484-490.
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· 32. L. Sun, W. Zhou, Y. Liang, L. Liu, P. Wu, Magnetic properties in Fe-doped SnS 2: Density functional calculations, Computational Materials Science 117 (2016) 489-495.
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· 33. L. Shi, P. Li, W. Zhou, T. Wang, K. Chang, H. Zhang, T. Kako, G. Liu, J. Ye, n-type boron phosphide as a highly stable, metal-free, visible-light-active photocatalyst for hydrogen evolution, Nano Energy 28 (2016) 158-163.
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· 34. Y.-L. Lu, S. Dong, W. Zhou, H. Zhao, P. Wu, Nonmagnetic 2p-block elements (B, C, N, and O)-doped AgCl for potential halide spintronic applications: A first-principles perspective, Physics Letters A 380(37) (2016) 2968-2973.
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· 35. Y. Liu, W. Zhou, L. Sun, Y. Liang, P. Wu, Insight into the electronic and magnetic properties of TiO 2 (101) surfaces with adsorbed water and ethanol molecules, Computational Materials Science 121 (2016) 174-181.
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· 36. Y. Li, W. Zhou, Y. Yang, P. Wu, Fabrication, characterization and physical properties of Co-doped SnO particles via hydrothermal method, Journal of Alloys and Compounds 685 (2016) 448-453.
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· 37. D. Yu, W. Zhou, Y. Liu, B. Zhou, P. Wu, Density functional theory study of the structural, electronic and optical properties of C-doped anatase TiO 2 (101) surface, Physics Letters A 379(28) (2015) 1666-1670.
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· 38. Y. Yang, W. Zhou, Y. Liang, L. Liu, P. Wu, Tuning band gap and ferromagnetism in epitaxial Al-doped SnO 2 films by defect engineering, Journal of Crystal Growth 430 (2015) 75-79.