新能源材料与器件系
基本信息|Basic Information
- 姓名:李燕瑞
- 学位:理学博士
- 职称:副教授
- 导师资格:硕士生导师
- 所在系所:新能源材料与器件
- 电子邮箱:liyanrui91@xust.edu.cn
综合介绍|General Introduction
李燕瑞,2017年毕业于中国科学科技大学无机化学专业,师从熊宇杰教授。2017年7月至2020年4月在西安交通大学沈少华教授课题组从事博士后工作。近年来主要从事新能源纳米材料制备及能源转化方面的研究,尤其在有机半导体二维纳米材料的设计、制备,及光催化全解水制氢和太阳能CO2小分子转化上具有丰富的经验。作为项目负责人主持国家及省部级项目5项:国家自然科学青年基金1项、中国博士后科学基金面上项目一等资助1项、陕西省自然科学基础研究计划基金1项、陕西省博士后科研项目基金1项、科技部重点研发计划专项项目子课题1项;主持科技大学高层次引进人才启动项目1项;参与国家自然科学基金3项。在Advanced Materials, Small, Chemical Science, Chinese Journal of Catalysis, Nano Research, J. Mater. Chem. A.等材料和化学领域的国内外顶级专业期刊发表SCI论文20余篇。
个人经历|Personal Experience
2020-至今 西安科技大学,副教授、硕导
2017-2020 西安交通大学,博士后(导师沈少华教授)
2012-2017 中国科学技术大学,博士(导师熊宇杰教授)
2008-2012 陕西师范大学,学士
科学研究|Scientific Research
一 研究领域
1. 太阳能光催化能源转化:光催化全解水制氢、二氧化碳、甲烷等小分子催化转化
2. 纳米材料结构调控:无机半导体、有机半导体、等离激元金属等材料
3. 催化反应体系多相界面结构调控:多相界面结构设计与调控机制研究
二 科研项目
2024.12-2026.12 太阳光驱动量子点催化剂高效CO2光催化转化为能源(0.8万), 陕西省科学技术青年协会, 青年人才托举计划
2023.01-2025.12 太阳能驱动高效光催化二氧化碳转化为能源燃料的关键技术研究(5万), 西安科技大学, 优秀青年基金
2021.01-2023.12 熔融盐法调控三均三嗪基有机半导体晶体材料精细结构及其光催化全解水制氢性能研究(30万), 国家自然科学基金委员会, 青年科学基金项目(C类)
2019.08-2022.07 表界面取向控制的新型异质结光催化材料的精准制备及其太阳能制氢性能(67万), 科技部国家重点研发计划, “政府间国际科技创新合作”重点专项子课题
2018.09-2019.06 调控熔融盐组分构建高效光催化全分解水g-C3N4晶体材料(8万), 中国博后科学基金, 第64批面上资助一等资助
2018.01-2022.12 双异质结构提高等离激元金属光电催化性能的机理研究(5万), 陕西省科技厅, 自然科学基础研究计划青年项目
2018.11-2019.06 碳氮有机半导体晶体精细结构调控及其光催化全分解水制氢性能研究(2万), 陕西省博士后科研项目二等资助
三 期刊论文
[1]Yanrui Li, Ruyu Guo, Tingting Kong*, Shaohua Shen*. Harnessing energetic charge carriers in plasmonic Au: towards multi-electron CO2-to-C2+ photoreduction, J. Materiomics, 2026, 12, 101181. (Impact Factor: 9.6, SCI一区, TOP)

[2] Sheng-Qi Guo, Qingqing Dong, Xiaodong Sun, Ziqi Zhang, Linda Wang, Lei Bao, Bozhan Li, Hui Li, Yanrui Li* and Tianyi Ma*. Synergistic Fluorine and Cyanide Co-Modification to Reinforce Photoinduced Excitons Formation and Transfer for efficient CO2 Photoreduction, Adv. Funct. Mater., 2026, 36, e17843. (Impact Factor: 19.4, SCI一区, TOP)

[3]Yanrui Li*, Bozhan Li, Xiang Gao, Linda Wang, Xuehao Li and Ruyu Guo. Local charge polarization by introducing acyanamide group and sulfur dopant with accelerated exciton dissociation and promotion of charge separation for improving CO2 photoreduction performance. J. Mater. Chem. A, 2025, 13, 16565. (Impact Factor: 9.5, SCI二区, TOP)

[4]Yanrui Li*, Linda Wang, Bozhan Li, Liangqing Zhang, Xiaolin Zhu and Xiang Gao*. Constructing a nickel complex/crystalline carbon nitride hybrid with a built-in electric field for boosting CO2 photoreduction. Nanoscale, 2025, 17, 407. (Impact Factor: 5.6, SCI二区)

[5].Yanrui Li*, Xuehao Li, Bozhan Li, Ruyu Guo and Xiang Gao*. Band structure engineering for a graphitic carbon nitride-based hybrid with improved photocatalytic CO2 reduction performance. New J. Chem., 2025, 49, 17362–17369. (Impact Factor: 2.7, SCI三区)

[6]Yanrui Li*, Linda Wang, Xiang Gao, Yingying Xue, Bozhan Li and Xiaolin Zhu*. Construction of a graphitic carbon nitride-based photocatalyst with a strong built-in electric field via p–p stacking interactions boosting photocatalytic CO2 reduction. J. Mater. Chem. A, 2024, 12, 7807–7816. (Impact Factor: 9.5, SCI二区, TOP)

[7].Yanrui Li, Yingying Xue, Xiang Gao, Linda Wang, Xiao Liu, Zhenhua Wang, and Shaohua Shen*. Cayanamide Group Functionalized Crystalline Carbon Nitride Aerogel for Efficient CO2 Photoreduction. Adv. Funct. Mater., 2023, 2312634. (Impact Factor: 19.4, SCI一区, TOP)

[8]Yanrui Li, Yiqing Wang, Chung-Li Dong, Yu-Cheng Huang, Jie Chen, Zhen Zhang, Fanqi Meng, Qinghua Zhang, Yiliang Huangfu, Daming Zhao, Lin Gu and Shaohua Shen*, Single-atom nickel terminating sp2 and sp3 nitride in polymeric carbon nitride for visible-light photocatalytic overall water splitting, Chem. Sci., 2021, 12, 3633-3643. (Impact Factor: 7.9, SCI一区, TOP)

[9]Yanrui Li, Tingting Kong*, and Shaohua Shen*, Artificial Photosynthesis with Polymeric Carbon Nitride: When Meeting Metal Nanoparticles, Single Atoms, and Molecular Complexes,Small 2019, 1900772. (Impact Factor: 12.5, SCI一区, TOP)

[10]Yanrui Li, Yu Guo, Ran Long, Dong Liu, Daming Zhao, Yubo Tan, Chao Gao*, Shaohua Shen*, Yujie Xiong*, Steering plasmonic hot electrons to realize enhanced full‐spectrum photocatalytic hydrogen evolution, Chinese J. Catal. 2018, 39, 453-46. (Impact Factor: 13.6, SCI一区, TOP)

[11]Yanrui Li, Zhaowu Wang, Tong Xia, Huanxin Ju, Ke Zhang, Ran Long, Qian Xu, Chengming Wang, Li Song, Junfa Zhu, Jun Jiang, and Yujie Xiong*, Implementing Metal-to-Ligand Charge Transfer in Organic Semiconductor for Improved Visible-Near-Infrared Photocatalysis, Adv. Mater., 2016, 28, 6959-6965. (Impact Factor: 28.9, SCI一区, TOP)

[12]Yanrui Li, Leilei Li, Yunqi Gong, Song Bai, Huanxin Ju, Chengming Wang, Qian Xu, Junfa Zhu, Jun Jiang* and Yujie Xiong*, Nano Research 2015, 8(11): 3621-3629. (Impact Factor: 9, SCI一区, TOP)
[13] Xiangyan Chen, Yanrui Li* and Shaohua Shen*, Surface- and interface-engineered heterostructures for solar hydrogen generation, Journal of Physics D: Applied Physics, 2018, 51, 163002.
[14] Guo Yu, Li Yanrui*, Wang Chengming, Long Ran*, Xiong Yujie*, Photogenerated Charge Separation and Photocatalytic Hydrogen Production of TiO2/Graphene Composite Materials, Acta Chimica Sinica, 2019, 77 (6): 520-524.