李明华

时间:2022-06-28阅读次数:10472

李明华副教授 硕士生导师、专业硕士导师



  办公地址

  北京市朝阳区北三环东路15号北京化工大学教学楼216A


  电子邮箱

     limh2022@buct.edu.cn



招生专业及研究方向

招生专业:
材料、能源、化工、化学

研究方向:

新型钙钛矿太阳能电池、新型光电转换材料与器件

个人经历

教育背景:

2013.09 - 2019.01 北京科技大学 博士

2009.09 - 2013.06 河北工业大学 学士

工作经历:

2026.01-至今           北京化工大学化学工程学院见习教授

2022.07 - 2025.12 北京化工大学化学工程学院副教授

2019.02 - 2022.06 中国科学院化学研究所博士后

科研项目

国家自然科学优秀青年科学基金项目,主持

国家自然科学基金面上基金项目,主持

国家自然科学基金青年基金项目,主持

北京化工大学人才启动经费,在研


学术成就

发表论文:

1. Ming-Xin Li, Shuo Wang, Chao-Qun Yan,* Xue-Yuan Gong, Wen-Li Wang, Yun-Lang Chen, Rong-Xuan Li, Jiaju Fu, Ming-Hua Li,* Jin-Song Hu*. Phase-Pure 2D Interfacial Perovskite Passivation for Stable and Efficient Photovoltaics. Carbon Energy 2026, e70183.

2. Dan He, Jiahao Zhang, Xue-Yuan Gong, Xinying Ruan, Xin-Bo Ma, Chaoyi Yao, Xingxing Shen, Ming-Hua Li,*Jianqi Zhang, Jin-Song Hu,* Chunru Wang, Fuwen Zhao*. Compacting Molecular Stacking and Inhibiting Self-Aggregation in Fullerene Transporting Layer for Efficient and Stable Perovskite Solar Cells. Angew. Chem. Int. Ed. 2025, 64, e202502950.

3. Tao Zhao,# Xi Jin,#Ming-Hua Li,* Jun Li, Sunfa Wang, Zhongyang Zhang, Peng Sun, Shiju Lin, Qi Chen, Jin-Song Hu,* Yao Li,* and Yan Jiang*. π-Conjugation-Induced In Situ Nanoscale Ordering of SpiroOMeTAD Boosts the Efficiency and Stability of Perovskite Solar Cells. J. Am. Chem. Soc. 2024, 146, 30893-30900

4. Shuo Wang,# Xue-yuan Gong,# Ming-Xin Li, Ming-Hua Li,* Jin-Song Hu*. Polymers for perovskite solar cells. JACS Au 2024, 4, 3400-3412.

5. Ming-Hua Li,* Xue-yuan Gong, Shuo Wang, Liang Li, Jiaju Fu, Jinpeng Wu, Jin-Song Hu*. Facile Hydrogen-bonding assisted crystallization modulation for large-area high-quality CsPbI2Br films and efficient solar cells, Angew. Chem. Int. Ed. 2024, 63, e202318591.

6. Yiman Dong, Runnan Yu, Gangfeng Su, Zongwen Ma, Zhangwei He, Ruyue Wang, Yuling Zhang, Jing Yang, Yongshuai Gong, Ming-Hua Li,* Zhan’ao Tan*. Interface Reactive Sputtering of Transparent Electrode for High-Performance Monolithic and Stacked Perovskite Tandem Solar Cells. Adv. Mater. 2024, 36, 2312704.

7. Ming-Hua Li,# Xinbo Ma,# Jiaju Fu, Shuo Wang, Jinpeng Wu, Run Long,* Jin-Song Hu*. Molecularly Tailored Perovskite/Poly(3-hexylthiophene) Interfaces for High-performance Solar Cells. Energy Environ. Sci. 2024, 17, 5513-5520.

8. Shan Jiang,# Ruyue Wang,#Ming-Hua Li,* Runnan Yu, Fuzhi Wang, Zhan’ao Tan*. Synergistic Electrical and Light Management Enables Efficient Monolithic Inorganic Perovskite/Organic Tandem Solar Cells with Over 24% Efficiency. Energy Environ. Sci. 2024, 17, 219-226.

9. Gangfeng Su, Runnan Yu, Yiman Dong, Zhangwei He, Yuling Zhang, Ruyue Wang, Qi Dang, Shihao Sha, Qianglong Lv, Zhiyang Xu, Zhuoxu Liu, Ming-Hua Li,* Zhan’ao Tan*. Crystallization Regulation and Defect Passivation for Efficient Inverted Wide-Bandgap Perovskite Solar Cells with over 21% Efficiency. Adv. Energy Mater. 2024, 14, 2303344.

10. Fa-Zheng Qiu, Ming-Hua Li,* Jinpeng Wu, Jin-Song Hu*. Buried Interface Management via Bifunctional NH4BF4 Towards Efficient CsPbI2Br Solar Cells with a Voc Over 1.4 V. J. Energy Chem. 2024, 89, 364-370.

11. Ming-Hua Li,# Shuo Wang,# Xinbo Ma, Run Long, Jinpeng Wu, Mingyue Xiao, Jiaju Fu, Zhe Jiang, Gang Chen, Yan Jiang, Jin-Song Hu*. Hydrogen-bonding-facilitated Dimethylammonium Extraction for Stable and Efficient CsPbI3 Solar Cells with Environmentally Benign Processing, Joule 2023, 7, 2595-2608.

12. Ming-Hua Li, Fazheng Qiu, Shuo Wang, Yan Jiang,* Jin-Song Hu*. Hole Transporting Materials in Inorganic CsPbI3-xBrx Solar Cells: Fundamentals, Criteria and Opportunities, Mater. Today 2022, 52, 250-268.

13. Ming-Hua Li,# Jiang-Yang Shao,# Yan Jiang,* Fa-Zheng Qiu, Shuo Wang, Jianqi Zhang, Guangchao Han, Jinlin Tang, Fuyi Wang, Zhixiang Wei, Yuanping Yi, Yu-Wu Zhong,* Jin-Song Hu*. Electrical Loss Management by Molecularly Manipulati ng Dopant-Free Poly(3-Hexylthiophene) Towards 16.93% CsPbI2Br Solar Cells. Angew. Chem. Int. Ed. 2021, 60, 16388-16393

招生需求

欢迎对能源、材料、化学有浓厚兴趣,踏实认真,善于思考,具有团队意识、合作精神的同学踊跃加入。

合作交流

与中国科学院化学研究所、北京科技大学、北京理工大学等高校及科研机构保持密切合作。