教学
现任教课程:《射频技术》《固体电子器件》《半导体物理》《工程实践》《高等半导体物理》。
曾讲授课程:《光伏原理及应用》《创业基础》《大学物理》。
教学竞赛荣誉:
2020年9月获得内蒙古大学物理科学与技术学院青年教师课堂教学技能大赛三等奖。
2020年10月获得内蒙古大学第一届课程思政课堂技能大赛优秀奖。
2021年3月获得教师团队副高组优秀奖(团队)。
2021年6月获得第六届“高等教育杯”全国高等学校物理基础课程青年教师讲课比赛内蒙古赛区一等奖。
2021年12月获得内蒙古大学青年教师教学基本功比赛二等奖。
2022年5月获得内蒙古大学第二届课程思政课堂技能大赛一等奖。
2023年5月26日获得第八届“高等教育杯”全国高等学校物理基础课程青年教师讲课比赛内蒙古赛区特等奖;2023年7月31日获得该比赛华北赛区一等奖;2023年12月获得该比赛全国赛区三等奖。
2024年1月获得第四届内蒙古大学教师教学创新大赛中级组二等奖(团队)。
主要论著
1. Experimental and first-principles study of photoluminescent and optical properties of Na-doped CuAlO2: the role of the NaAl-2Nai complex. Journal of Physics D: Applied Physics. (SCI, IF=3.2) 2015, 48(33): 335102. (第一作者)
2. Shallow Acceptor State in Mg-Doped CuAlO2 and Its Effect on Electrical and Optical Properties: An Experimental and First-Principles Study. ACS Applied Materials & Interfaces. (SCI, IF=7.8) 2017, 9(14): 12608-12616. (第一作者)
3. First-principles investigations on extrinsic acceptor defects in alkaline-earth metal and N doped CuAlO2. Physica B: Condensed Matter. (SCI, IF=2.8) 2018, 547: 38-47. (第一作者)
4. Mechanism of improvement of efficiency of Cu2ZnSn(S,Se)4 solar cells by optimization of deposition temperature of CdS buffer layer. Solar Energy. (SCI, IF=7.9) 2023, 262: 111847. (通讯作者)
5. Achieving 11.23% efficiency in CZTSSe solar cells via defect control and interface contact optimization. Solar Energy. (SCI, IF=7.9) 2024, 283: 112913. (通讯作者)
6. Optimizing the window layer for achieving over 10% efficient Cu2ZnSn(S,Se)4 solar cells. Solar Energy Materials and Solar Cells. (SCI, IF=6.6) 2024, 269: 112798. (通讯作者)
7. Enhancing the performance of CZTSSe solar cells via an alternate spin-coating process with DMSO and DMF. Solar Energy Materials and Solar Cells. (SCI, IF=6.6) 2024, 274: 112976. (通讯作者)
8. Enhancing CZTSSe solar cell efficiency to 11.07% with NaClO-induced Mo texturing for improved light management and carrier collection. Applied Physics Letters. (SCI, IF=3.8) 2025, 126(8): 082108. (通讯作者)
9. Unveiling Sodium Diffusion Kinetics and Locking Mechanisms for High-Performance CZTSSe Photovoltaics. Advanced Science. (SCI, IF=14.1) 2025, 12(30): e04087. (通讯作者)
10. Boosting spectral response at band edge and charge transport in CZTSSe solar cells by periodic Mo back-contact texturing. Applied Physics Letters. (SCI, IF=3.8) 2025, 127(13): 133902. (通讯作者)
11. Defect-Competitive Equilibrium Driven 13.83% Efficiency Breakthrough in DMF-Based CZTSSe Solar Cells. Advanced Functional Materials. (SCI, IF=19.9) 2026, 36(3): e11600. (共同第一作者)
12. Boosting carrier collection in CZTSSe solar cells via laser-induced in situ crystallization of ITO window layers. Solar Energy. (SCI, IF=7.9) 2026, 306: 114293. (通讯作者)