杨玉洁
通讯员:卫周瑶 来源:微电子学院 阅读: 发布时间:2026-09-16 审稿:古江波

Ø 个人简介
杨玉洁,中共党员。武汉纺织大学微电子学院讲师,硕士生导师(不确定);主要从事有机光电材料与器件的研究。攻读学位期间,荣获社会奖学金、优秀毕业生、“优秀毕业论文”、“优秀共产党员”、等多项荣誉。以第一作者在Advanced Functional Materials、Science China Chemistry、The Journal of Physical Chemistry Letters等国际期刊发表研究论文多5篇,核心参与在Energy & Environmental Science、 ACS Catalysis等国际期刊发表研究成果。
办公地点:崇真楼南楼A2046
电子邮箱:2026093@wtu.edu.cn
Ø 教育经历
2015.09-2019.06 武汉工程大学材料科学与工程学院 大学本科
2019.09-2022.06 武汉理工大学材料科学与工程学院 硕士研究生
2022.09-2026.06 武汉理工大学材料科学与工程学院 博士研究生
Ø 工作经历
2026.09-至今 武汉纺织大学微电子学院 讲师
Ø 研究方向
有机光电材料与器件、有机分子聚集态调控。
Ø 代表性成果
1. Yujie Yang, Yuandong Sun, Dawei Gao, et al. High performance near infrared organic photodetectors realized by non-fullerene acceptors with reduced static energetic disorder[J]. Advanced Functional Materials, 2026, 36(1): e12335.
2. Yujie Yang, Oskar J. Sandberg, Chenhao Liu, et al. Swollen and orientated intermolecular packing toward suppressed dark current in organic photodetectors. Science China Chemistray, 2025, 6: 5912-5919.
3. Yujie Yang, Yating Liu, Jing Zhou, et al. Dual interface modification using potassium aspartic acid to realize low dark current, high-speed nonfullerene photodetectors. The Journal of Physical Chemistry Letters, 2024, 15(10): 2675-2681
4. Yujie Yang, Donghui Li, Jinlong Cai, et al. Enhanced photocatalytic hydrogen evolution from organic ternary heterojunction nanoparticles featuring a compact alloy-like phase. Advanced Functional Materials, 2023, 33(10): 2209643.
5. Yujie Yang, Donghui Li, Pang Wang, et al. Polymer/non-fullerene acceptor bulk heterojunction nanoparticles for efffcient photocatalytic hydrogen production from water. Plymor, 2022, 224, 124667.
6. Dawei Gao, Yujie Yang, Xinyang Zhou, et al. CsPbI2Br quantum dots integration for high performance organic photovoltaics and photodetectors. Energy & Environmental Science, 2025, 18(7): 3288-3295.
7. Shang Wen, Yujie Yang, Jinlong Cai, et al. Molecular structure engineering toward enhanced photocatalytic hydrogen evolution and stability of organic heterojunction nanoparticles. ACS Catalysis, 2023, 13(19), 12730-12736.

