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张清林
2023-05-10 22:31
  • 张清林
  • 张清林 - 副教授-湖南大学-物理与微电子科学学院-个人资料

近期热点

资料介绍

个人简历


教育背景 2001.9-2006.6:吉林大学 研究生院物理化学专业硕博连读,理学博士 1997.9-2001.7:吉林大学 化学学院精细化工专业,工学学士 工作履历 2006.7-2008.5:湖南大学 物理与微电子科学学院 讲师 2008.7-现在:湖南大学 物理与微电子科学学院 副教授 2011.5-2012.5:美国亚利桑那州立大学 访问学者 2017.1-现在:湖南大学岳麓学者晨星B岗

研究领域


低维半导体纳米结构制备及其光子学、电输运特性研究 微纳光电材料、器件微区光电特性 光催化及光伏器件研究 光电表征技术的研发应用

近期论文


1. Qinglin Zhang, Huawei Liu, Pengfei Guo, Dan Li, Peng Fan, Weihao Zheng, Xiaoli Zhu, Ying Jiang, Hong Zhou, Wei Hu, Xiujuan Zhuang, Hongjun Liu, Xiangfeng Duan, Anlian Pan, Vapor growth and interfacial carrier dynamics of high- quality CdS-CdSSe-CdS axial nanowire heterostructures, Nano Energy 32 (2017) 28–35 2. Qinglin Zhang, Xiaoli Zhu, Yunyun Li, Junwu Liang, Tianren Chen, Peng Fan, Hong Zhou, Wei Hu, Xiujuan Zhuang and Anlian Pan. Nanolaser Arrays Based on Individual Waved CdS Nanoribbons, Laser & Photonics Reviews 2016 10(3):458-464 3. Qinglin Zhang, Shao-Wei Wang, Xingxing Liu, Tianren Chen, Huafen Li,Junwu Liang, Weihao Zheng, Xiaoli Zhu, Xiujuan Zhuang, Ritesh Agarwal, Wei Lu and Anlian Pan. Low Threshold, Single-mode Laser Based on Individual CdS Nanoribbons in Dielectric DBR Microcavity, Nano Energy 30 (2016) 481–487 4. #Li, H.; #Zhang, Q.; Duan, X.; Wu, X.; Fan, X.; Zhu, X.; Zhuang, X.; Hu, W.; Zhou, H.; Pan, A.; Duan, X., Lateral Growth of Composition Graded Atomic Layer MoS2(1-x)Se2x Nanosheets. J Am Chem Soc 2015, 137 (16), 5284-7.(#共同一作) 5. #Ren, P.; #Hu, W.; #Zhang, Q.; Zhu, X.; Zhuang, X.; Ma, L.; Fan, X.; Zhou, H.; Liao, L.; Duan, X.; Pan, A., Band-selective infrared photodetectors with complete-composition-range InAs(x)P(1-x) alloy nanowires. Adv Mater 2014, 26 (44), 7444-9. (#共同一作) 6. #Zhuang, X.; #Guo, P.; #Zhang, Q.; Liu, H.; Li, D.; Hu, W.; Zhu, X.; Zhou, H.; Pan, A., Lateral composition-graded semiconductor nanoribbons for multi-color nanolasers. Nano Research 2016, 9, 933–941. (#共同一作) 7. Zeng, Y.; Li, H.; Qu, B.; Xiang, B.; Wang, L.; *Zhang, Q.; Li, Q.; Wang, T.; Wang, Y., Facile synthesis of flower-like Cu3BiS3 hierarchical nanostructures and their electrochemical properties for lithium-ion batteries. CrystEngComm 2012, 14 (2), 550-554. 8. Zou, Y.; Li, H.; Ren, P.; Xu, J.; Ma, L.; Wang, X.; Fan, X.; Shan, Z.; Zhuang, X.; Zhou, H.; Zhu, X.; *Zhang, Q.; Pan, A., Microphotoluminescence of individual ZnSe nanoribbons.Mater Lett 2014, 129, 118-121. 9. Fan, C.; *Zhang, Q.; Zhu, X.; Zhuang, X.; Pan, A., Photoluminescence and surface photovoltage properties of ZnSe nanoribbons. Science Bulletin 2015, 60 (19), 1674-1679. 10. Li, Y.; Liang, J.; *Zhang, Q.; Zhou, Z.; Li, H.; Fan, X.; Wang, X.; Fan, P.; Yang, Y.; Guo, P.; Zhuang, X.; Zhu, X.; Liao, L.; Pan, A., Optical waveguide beam splitters based on hybrid metal–dielectric–semiconductor nanostructures. Optics Comm 2015, 354, 168-173. 11. Zhang, Q.*; Cao, S.; Xia, M.; Wang, X.; Wan, Q.; Pan, A., Study on Charge Carriers Behavior at CdS/TiO2Interface of One Dimensional TiO2@CdS Core-shell Structure by Raman Scattering and Surface Photovoltage Spectroscopy.Act Chim Sin 2013, 71 (04), 634. 12. 李丹, 梁君武, 刘华伟, 张学红, 万强, 张清林*, 潘安练, CdS/CdS0.48Se0.52轴向异质结纳米线的非对称光波导及双波长激射研究, 物理学报, 66, (2017) 064204. 13. 张清林,王小件,王黎明,樊超,夏明霞,潘安练, 锥状TiO2纳米带制备及光电性质研究. 材料导报 2015, 29 (1), 1-5. 14. 张清林,王福祥,夏明霞,曾亚萍,曹尚超, Ag颗粒修饰二氧化钛纳米管阵列及其光电性质的表征. 材料导报 B:研究篇 2012, 26 (4), 22-25. 15. Xia, M.; Wang, F.; Wang, Y.; Pan, A.; Zou, B.; *Zhang, Q.; Wang, Y., TiO2 nanowires sensitized with CdS quantum dots and the surface photovoltage properties. Mater Lett 2010, 64 (15), 1688-1690. 16. Xia, M.; Wang, Y.; Li, H.; Zeng, Y.; Qu, B.; Wang, F.; Pan, A.; Zou, B.; *Zhang, Q.; Wang, Y., Facile preparation of TiO2 nanostructures by direct annealing of the Ti foil. Mater Lett 2010, 64 (21), 2392-2394. 17. Dai, G.; Peng, Z.; *Zhang, Q.; Zhou, W.; Xia, M.; Li, H.; Pan, A.; Wan, Q.; Zou, B., Ordered CdS micro/nanostructures on CdSe nanostructures. Nanotechnology 2009, 20 (12), 125601. 18. Xia, M.; *Zhang, Q.; Li, H.; Dai, G.; Yu, H.; Wang, T.; Zou, B.; Wang, Y., The large-scale synthesis of one-dimensional TiO2 nanostructures using palladium as catalyst at low temperature. Nanotechnology 2009, 20 (5), 055605.

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