程雅慧
近期热点
资料介绍
个人简历
1999.9-2003.7:天津大学理学院应用物理专业,学士学位;2003.9-2006.3:天津大学理学院材料物理与化学专业,硕士学位;2007.9-2010.7:南开大学信息学院物理电子学专业,博士学位。2009.5-2009.11:悉尼大学电子显微中心;2017.12-2018.12:悉尼大学物理系。研究领域
光催化与光电催化;纳米材料合成;新型电子器件近期论文
15. J. He, L. C. Zheng, D. Q. Feng, M. Y. Liu, D. W. Shao, Z. M. Lu, X. H. Zhang, W. H. Wang, W. C. Wang, F. Lu, H. Dong, Y. H. Cheng*, H. Liu*, H. Liu, R. K. Zheng, Interfacial effects on the microstructures and magnetoresistance of Ni80Fe20/P3HT/Fe organic spin valves, Journal of Alloys and Compounds, 769, 991-997 (2018). 14. D. W. Shao, L. C. Zheng, D. Q. Feng, J. He, R. Zhang, H. Liu, X. H. Zhang, Z. M. Lu, W. C. Wang, W. H. Wang, F. Lu, H. Dong, Y. H. Cheng*, H. Liu*, R. K. Zheng, TiO2-P3HT:PCBM photoelectrochemical tandem cell for solar-driven overall water splitting, Journal of Material Chemistry A, 6(9), 4032-4039 (2018). 13. J. He, Y. Cheng*, T. Wang, D. Feng, L. Zheng, D. Shao, W. Wang, W. Wang, F. Lu, H. Dong, R. Zheng, H. Liu, Enhanced photocatalytic performances and magnetic recovery capacity of visible-light-driven Z-scheme ZnFe2O4/AgBr/Ag photocatalyst, Applied Surface Science, 440, 99-106 (2018). 12. D. Q. Feng, Y. H. Cheng*, J. He, L. C. Zheng, D. W. Shao, W. C. Wang, W. H. Wang, F. Lu, H. Dong, H. Liu, R. K. Zheng, H. Liu, Enhanced photocatalytic activities of g-C3N4 with large specific surface area via a facile one-step synthesis process, Carbon, 125, 454-463 (2017). 11. D. Shao, Y. Cheng*, J. He, D. Feng, L. Zheng, L. Zheng, X. Zhang, J. Xu, W. Wang, W. Wang, F. Lu, H. Dong, L. Li, R. Zheng, H. Liu, A spatially separated organic-inorganic hybrid photoelectrochemical cell for unassisted overall water splitting, ACS Catalysis, 7, 5308-5315 (2017). 10. J. He, D. W. Shao, L. C. Zheng, L. J. Zheng, D. Q. Feng, J. P. Xu, X. H. Zhang, W. C. Wang, W. -H. Wang, F. Lu, H. Dong, Y. H. Cheng*, H. Liu*, and R. K. Zheng, Construction of Z-scheme Cu2O/Cu/AgBr/Ag photocatalyst with enhanced photocatalytic activity and stability under visible light, Applied Catalysis B: Environmental, 203, 917-926 (2017). 9. J. He, C. Wang, Y. Cheng*, M. Liu, W. Wang, W. Wang, F. Lu, K. Gao, Z. Li, and H. Liu*, Tunable electric properties of half-metallic ZnxFe3−xO4 and the characteristics of ZnxFe3−xO4 /n-type Si interfaces, Journal of Physics D: Applied Physics, 49, 095301 (2016). 8. Y. H. Cheng, Y. Lin, J. Xu, J. He, T. Wang, G. Yu, D. Shao, W. -H. Wang, F. Lu, L. Li, X. Du, W. Wang, H. Liu, and R. Zheng, Surface plasmon resonance enhanced visible-light-driven photocatalytic activity in Cu nanoparticles covered Cu2O microspheres for degrading organic pollutants, Applied Surface Science, 366, 120-128 (2016). 7. H. B. Li, M. Liu, F. Lu, W. Wang, Y. H. Cheng*, S. Song, Y. Zhang, Z. Q. Li, J. He, H. Liu*, X. Du, and R. K. Zheng, Extraordinary Hall effect and universal scaling in Fex(ZnO)1-x granular thin films at room temperature, Applied Physics Letters, 106, 012401 (2015). 6. X. B. Cao, W. H. Wang, X. H. Zhang, L. Y. Li, Y. H. Cheng*, H. Liu, S. C. Du, and R. K. Zheng, Magnetic properties of fluffy Fe@α-Fe2O3 core-shell nanowires, Nanoscale Research Letters, 8, 423 (2013). 5. Y. H. Cheng, X. H. Zhang, L. Y. Li, X. G. Luo, H. Liu, W. H. Wang, and R. K. Zheng, Large coercivity and exchange bias in [Fe1−δ(FeO)δ]x(TiO2)1−x granular films, Applied Physics Letters, 102(19), 192403 (2013). 4. Y. H. Cheng, L. Y. Li, W. H. Wang, H. Liu, S. W. Ren, X. Y. Cui, and R. K. Zheng, Tunable electrical and magnetic properties of half-metallic ZnxFe3-xO4 from first principles, Physical Chemistry Chemical Physics, 13(48), 21243 (2011). 3. Y. H. Cheng, L. Y. Li, W. H. Wang, X. G. Luo, H. Liu, and R. K. Zheng, Structural, electrical, and magnetic properties of polycrystalline Fe3-xPtxO4 (0≤x≤0.10) films, Journal of Applied Physics, 109(7), 073905 (2011). 2. Y. H. Cheng, H. Liu, H. B. Li, R. K. Zheng, and S. P. Ringer, Annealing effects on the structural, magnetic and electrical properties of the nanocrystalline Fe3O4 films, Journal of Physics D: Applied Physics, 42(21), 215004 (2009). 1. Y. H. Cheng, R. K. Zheng, H. Liu, Y. Tian, and Z. Q. Li, Large extraordinary Hall effect and anomalous scaling relations between the Hall and longitudinal conductivities in epsilon-Fe3N nanocrystalline films, Physical Review B, 80(17), 174412 (2009).标签: 南开大学 电子信息与光学工程学院
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