Supervisor of Master's Candidates
Date of Employment:2014-07-15
School/Department:Hefei University of Technology
Administrative Position:教师
Education Level:With Certificate of Graduation for Doctorate Study
Business Address:化学化工楼312
Gender:Male
Degree:Doctoral Degree in Science
Status:Employed
Alma Mater:Changchun Institute of Applied Chemistry
Profile
李伸杰,博士,九三学社成员,硕士生导师
2014年7月,毕业于中国科学院长春应用化学研究所,获理学博士学位
2014年7月,加入合肥工业大学,化学与化工学院
主讲课程:化工原理、工科化学、化学反应工程、化工原理实验等
学科竞赛:指导学生获全国大学生化工实验大赛全国一等奖、华东赛区特等奖、一等奖多项,指导学生获全国大学生可再生能源优秀科技作品竞赛、全国大学生化工短视频大赛、安徽省大学生节能减排社会实践与科技竞赛国家级、省部级奖项多项
科研方向为量子点、纳米晶及异质结的合成及在光催化、电催化中的应用和机理研究
目前以第一或通讯作者身份在ACS Nano、Small、SCIENCE CHINA Chemistry、Chemistry of Materials、ACS Applied Materials & Interfaces、Journal of Materials chemistry A、 Inorganic Chemistry等期刊发表论文40余篇,申请发明专利8项,长期担任Small、 Laser & Photonics Reviews、 ACS Applied & Materials Interfaces、 ACS Sustainable Chemistry & Engineering、Advanced Optical Materials, Solar RRL, Inorganic chemistry等杂志的审稿人。
主持安徽省自然科学基金面上项目、学术人才自主创新项目、高值催化转化与反应工程安徽省重点实验室重点实验室自主创新专项、合肥工业大学学术新人提升计划B项目、合肥工业大学应用培育计划项目等项目
欢迎对半导体量子点、纳米晶、异质结材料及光催化制氢、电催化制氢研究领域感兴趣的同学加入课题组
主要通讯/第一作者论文
Kai Ding, Keyu Zhang,Xiang Liu, Qian Xu, Xu Cheng, Mengjie Yao, Wensong Wang, Ying Zeng, Tongqi Ye, Yaling He, Weiwei Lin*, Rulong Zhou, Yanyan Chen* and Shenjie Li*, High-Density Donor–Acceptor Pair Mediated Carrier Transport Dynamics for Hydrogen Production Performance Promotion Based on Nonstoichiometric Quantum Dots, ACS Nano, 2025, 19, 8238
Xiang Liu, Deheng Chen, Shizhe Cao , Weizi Jiang, Wensong Wang, Ying Tian, Xinyi Qin, Weiwei Lin, Rulong Zhou , Yanyan Chen* and Shenjie Li*, Insight into the Photocatalytic Mechanism in Nanopotential Well@Homojunction System: Carrier Dynamics of the TiO2/ZnIn2S4*/ZnIn2S4 Quantum Dot System, SCIENCE CHINA Chemistry, 2026, https://doi.org/10.1007/s11426-026-3671-8
Shenjie Li*, Xiang Liu, Weizi Jiang, Deheng Chen, Shizhe Cao, Ying Tian, Jingwei Li, Jingjing Zhang, Weiwei Lin, Rulong Zhou, Xuezhi Song, Yanyan Chen*, Amorphous ZnWO4/CuIn4S6.5 with Intrinsic Sulfur Vacancies:Urbach Tail-Modulated Anomalous Charge Transfer toward Efficient Photocatalytic H2 Evolution, ACS Applied Materials & Interfaces, 2026, 18, 49073−49089
Xiuwen Cao,Rui Ge,Mingtao Li, Yaosong Wen, Chaoyue Li, Wensong Wang, Ying Tian, Xiang Liu, Tongqi Ye, Rulong Zhou, Weiwei Lin, Xuezhi Song,* Shenjie Li,* and Yanyan Chen*, Capacitance-Type Governance Rather Than Magnitude: MOF-Derived Zn/P Co-Doped Ni3S2 for Selective Urea Electrocatalysis, Small, 2026, e75666.
Ying Zeng, Keyu Zhang, Yuzhuo Ma, Nanxi Yang, Xinyi Han, Kai Ding, Tongqi Ye, Rulong Zhou, Yanyan Chen* and Shenjie Li*. Mechanistic Insight into Donor−Acceptor Pair-Driven Photocatalysis: How S2− Dipole and ZnS Shell Regulate Sub-Bandgaps of Ag−In−S QDs, Chemistry of Materials, 2026, 38, 2, 919–928
Yanyan Chen,* Wensong Wang, Ying Tian, Xiang Liu, Shizhe Cao, Deheng Chen, Weizi Jiang, Jingjing Zhang, Jingwei Li, Rulong Zhou, Weiwei Lin, and Shenjie Li*, MOFs-on-MOFs Derived Ternary Sulfide Heterojunctions: Dynamic Ni Site Switching via Interfacial Charge Redistribution for Efficient OER and UOR Catalysis, Small, 2026, e75245
Wensong Wang, Ying Tian, Xiuwen Cao, Xiang Liu, Shizhe Cao, Deheng Chen, Weizi Jiang, Mingtao Li, Weiwei Lin, Xun Sun,* Shenjie Li* and Yanyan Chen, * Dynamic Cu valence state cycling regulates urea– OH− adsorption competition: electrocatalytic mechanism and application of CuxS/FeS/NF, Journal of Materials Chemistry A, 2026, 14, 10383–10399
Xinyi Qin, Xinyu Jing, Nana Li, Xu Cheng, Xiang Liu, Gaoyang Shi, Cheng Ye, Weiwei Lin, Maofeng Zhang, Yanyan Chen,* Xue-Zhi Song* and Shenjie Li,* Donor-Acceptor Pair Mediated Carrier Dynamics Optimization Boosts Photocatalytic Hydrogen Evolution of Cu-In-S/ZnIn2S4 Heterojunctions, Advanced Synthesis & Catalysis, 2026, e70575
Shuang Wang, Yuye Cheng, Wenfei Huang, Minghao Dou, Hongyu Shao, Mengjie Yao, Kai Ding, Tongqi Ye, Rulong Zhou, Shenjie Li * and Yanyan Chen*, The Zn Vacancy-mediated De-accumulation based process for Hydrogen Production Performance Promotion of 1D Zn-Cd-S Nanorods, Small, 2024 2306447.