物理学硕导_罗光灿
基本信息 |
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姓 名: |
罗光灿 |
性 别: |
男 |
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民 族: |
侗族 |
出生年月: |
1990.9 |
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籍 贯: |
贵州黎平 |
政治面貌: |
中共党员 |
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学 历: |
研究生 |
职 称: |
副教授(校聘) |
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学 位: |
工学博士 |
E-Mail: |
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主要经历 |
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2008.09—2012.07 |
四川大学材料科学与工程学院材料化学专业本科学习 |
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2012.09—2015.07 |
四川大学材料科学与工程学院材料物理与化学专业硕士研究生学习 |
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2015.07—2016.03 |
中国振华(集团)新云电子元器件有限责任公司技术员工作 |
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2016.07—2018.06 |
贵州财经大学人事处科员工作 |
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2018.09—2021.07 |
四川大学材料科学与工程学院材料物理与化学专业博士研究生学习 |
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2021.09—至 今 |
十大线上娱乐平台排名材料科学与工程学院教师工作 |
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研究方向 |
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硕士生导师,招生专业:材料与化工(专硕)、物理学(学硕),主研光电子材料与器件: 1、宽禁带半导体制备与掺杂研究 2、二维材料制备与改性研究 3、光电探测器性能优化研究 |
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教学与科研情况 |
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一、教学 主讲《大学物理》、《材料前沿》等课程。 二、项目 1、主持贵州省科技厅自然科学基金一般项目1项:ZnO纳米棒/CuI@rGO薄膜混合维度异质结界面和能带调控及器件紫外探测性能研究,10万元,2023.01.01-2025.12.31,在研; 2、主持贵州省教育厅自然科学基金青年项目1项:基于ZnO/CuScO2核壳结构的自供电光电器件构建及紫外探测性能研究,5万元,2023.01.01-2024.12.31,在研; 3、主持贵州民族大学自然科学基金一般项目1项:TiO2/MXene范德华肖特基结性能调控及紫外探测研究,6万元,2023.01.01-2024.12.31,在研。 三、文章 主要研究内容:宽禁带半导体(ZnO、TiO2、SnO2、CsPbCl3、GaN、SiC等)和二维材料(石墨烯、MXenes、TMDs等)的制备及改性,以及光电探测器中吸收层钝化、异质结界面优化和载流子传输层调控。已在《Advanced Functional Materials》、《Journal of Materials Science & Technology》、《Solar Energy》、《Journal of Alloys and Compounds》、《Journal of Physics D: Applied Physics》、《RSC Advances》、《Optical Materials》、《Materials Science in Semiconductor Processing》、《International Journal of Photoenergy》国外学术期刊发表SCI论文13篇,累计引用次数60余次。 一作及通信作者论文(†标记为共同一作,*标记为通信作者) 1. Guangcan Luo†, Ziling Zhang†, Yabing Wang, et al., A self-powered ultraviolet photodetector with van der Waals Schottky junction based on TiO2 nanorod arrays/Au-modulated V2CTx MXene. Journal of Materials Science & Technology, 2023 (一区,IF: 10.319) 2. Guangcan Luo†, Ziling Zhang†, Jun Wang, et al., High-performance ultraviolet photodetectors enabled by van der Waals Schottky junction based on TiO2 nanorod arrays/Au-modulated Ti3C2Tx MXene. Advanced Functional Materials, 2023, 2211610. (一区,IF: 19.924) 3. Guangcan Luo*, Dan Yang, Xuxiang Guo, et al., Quasi-ohmic contact formation assisted by the back contact with Cu2Te nanoparticles@reduced graphene oxide composites for highly efficient CdTe solar cells. Journal of Alloys and Compounds, 2022, 921, 166100. (二区,IF: 6.371) 4. Guangcan Luo*, Xinji Yang, Yuchen Long, et al., Enhanced performance of self-powered ultraviolet photodetectors coupled with the photovoltaic-pyroelectric effect based on ZnO/CuBO2 core-shell nanorod arrays. Journal of Alloys and Compounds, 2022, 911, 165066. (二区,IF: 6.371) 5. Guangcan Luo†, Ziling Zhang†, Jing Jiang, et al., Enhanced performance of ZnO nanorod array/CuSCN ultraviolet photodetector with functionalized graphene layers. RSC Advances, 2021, 11, 7682-7692. (三区,IF: 4.036) 6. Guangcan Luo, Linyu Zhu, Bo Tan, et al., A facile one-step chemical synthesis of copper@reduced graphene oxide composites as back contact for CdTe solar cells. Solar Energy, 2020, 211, 90-99. (二区,IF: 7.188) 7. Xue Bi†, Guangcan Luo†, Wei Li, et al., Bi-containing reduced graphene oxide for CdTe solar cells. Solar Energy, 2018, 170, 820-827. (二区,IF: 7.188) 8. Guangcan Luo, Bin Lv, Wei Li, et al., Characterization of Cu1.4Te thin films for CdTe solar cells. International Journal of Photoenergy, 2014, 762576. (四区,IF: 2.535) 非一作及通信作者论文 1. Jing Zhang*, Xuanxue Sun, Tengfei Wang, Weiwei Xu, Guangcan Luo, et al., Vanadium dioxide coatings with enhanced optical and thermochromic performances. Optical Materials, 2023, 136, 113498. (三区,IF: 3.754) 2. Xuxiang Guo, Guangcan Luo, et al., rGO@CuSCN bilayer as composite back contact for highly efficient CdTe thin-film solar cells. Optical Materials, 2021, 120, 111421. (三区,IF: 3.754) 3. Bo Tan, Guangcan Luo, et al., Space-limited domain annealing of CuI thin films for highly responsive ZnO nanorods based ultraviolet photodetectors. Materials Science in Semiconductor Processing, 2021, 134, 106008. (三区,IF: 4.644) 4. Jing Jiang, Guangcan Luo, et al., Highly responsive ZnO nanorods array ultraviolet photodetectors modificated with reduced graphene oxide layer. Journal of Physics D: Applied Physics, 2021, 54, 315104. (三区,IF: 3.409) 5. Linyu Zhu, Guangcan Luo, et al., Ohmic contact formation and activation for reduced graphene oxide and Sb bilayers contacted CdTe solar cells. Materials Science in Semiconductor Processing, 2020, 118, 105186. (三区,IF: 4.644) |
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