吴孔林 教授 博士 安徽省 研究领域: 储能,精细化工 研究方向: 1. 无机功能纳米材料 2. 光/电催化小分子转化(氮循环) 3. 单原子催化剂电催化与储能 所在单位: 安徽工业大学

基本信息

所在单位:
安徽工业大学
机构细分:
化学与化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2016.09−2019.07 清华大学,化学系,博士
2008.09−2011.06 安徽师范大学,化学与材料科学学院,硕士
2004.09−2008.07 安徽师范大学,化学与材料科学学院,学士
工作经历:
2025.12−至今 安徽工业大学,化学与化工学院,教授
2019.12−2025.11 安徽工业大学,化学与化工学院,副教授
2014.10−2019.11 安徽师范大学,化学与材料科学学院,实验师
2011.07−2014.09 安徽师范大学,化学与材料科学学院,助理实验师
专家介绍:
吴孔林,教授,博士生导师,省级青年拔尖人才,马鞍山市“龙马工程”高层次人才。目前,课题组主要围绕无机功能纳米材料、单原子位点功能材料理性设计与精准构筑及其光/电催化与储能上的应用开展研究工作。主持国家自然科学基金2项,其它各类项目10余项,以第一或通讯作者在Angew. Chem. Int. Ed., Coord. Chem. Rev., Adv. Funct. Mater., Appl. Catal. B: Environ. Energy, Energy Storage Mater., J. Energy Chem., Nano Lett.等学术期刊上发表SCI论文50余篇,获授权专利2项,论文被引10000余次,H因子35。

科研能力

研究领域:
储能,精细化工
研究方向:
1. 无机功能纳米材料
2. 光/电催化小分子转化(氮循环)
3. 单原子催化剂电催化与储能
论文著作:
(1) Mingyue Wang, Wenhai Wang, Shi Chen, Mingfu Ye, Turghun Muhammad, Konglin Wu*, Kui Zhang*, Xianwen Wei *, Xavier Cetó*, Manel del Valle*, The state-of-the-art of molecularly imprinted polymers based electrochemical sensors and their applications in drug assay, Coordination Chemistry Reviews, 2025, 526, 216384.
(2) Chao Yuan#, Wenzhu Bi#, Peiyao Wang#, Zhaoyang Han*, Jie Zhang, Ligang Xu, Jirong Mou, Lei Chen, Zhenyu Xiao, Tianli Wu, Peng Zhang, Mingxue Tang, Menghao Yang*, Andreu Cabot, Konglin Wu*, Jingyu Sun*, Dawei Yang*, Theory-guided design of one-dimensional π-d conjugated coordination polymer with multiple redox-active sites for advanced sodium-organic batteries, Energy Storage Materials, 2025, 83, 104731.
(3) Wenhai Wang#, Nanzhe Li#, Guohong Fan#, Guoqiang Wen, Mingyue Wang, Shengxiang Chen, Jieyue Wang, Mingfu Ye, Fanghui Wu*, Tao Gan*, and Konglin Wu*, Modulating the desorption of *OH via coupling Cu-Co bimetallic catalyst for boosting oxygen reduction reaction, Journal of Energy Chemistry, 2025, 111, 904–913.
(4) Cheng Peng#, Mingyue Wang#, Sha Li#, Xuezhi Zeng, Jieyue Wang, Wenhai Wang, Zhirong Zhang, Mingfu Ye, Xianwen Wei, Konglin Wu*, Kui Zhang*, and Jie Zeng*, A General Strategy Based on Hetero-Charge Coupling Effect for Constructing Single-Atom Sites, Angewandte Chemie International Edition, 2024, 63, e202408771.
(5) Konglin Wu#, Sha Li#, Chuan Hu#, Guoqiang Wen, Xuezhi Zeng, Mingyue Wang, Jieyue Wang, Mengyuan Chu, Hengshuai Shang, Mingfu Ye, Wenhai Wang*, Fanghui Wu*, and Shengjie Peng*, Nitrogen-bridged Cu-Zn dual-atom cooperative interface sites for efficient oxygen reduction reaction in Zn-air battery, Applied Catalysis B: Environment and Energy, 2024, 357, 124288.
(6) Qingzhu Wu, Liyuan Li, Yushuang Zheng, Bo Peng, Jie Xu, Konglin Wu*, Ailin Xia, and Lianbo Ma*, Realizing Physical Blocking and Chemical Electrocatalysis of Polysulfides by A Separator Coating Layer in Lithium–Sulfur Batteries, Science China Materials, 2024, 67, 107–115.
(7) Lianbo Ma*,# Guoyin Zhu,# Ziwei Wang, Acheng Zhu, Konglin Wu*, Bo Peng, Jie Xu, Donghong Wang, and Zhong Jin*, Long-Lasting Zinc–Iodine Batteries with Ultrahigh Areal Capacity and Boosted Rate Capability Enabled by Nickel Single-Atom Electrocatalysts, Nano Letters, 2023, 23, 5272–5280.
(8) Lianbo Ma, Ji Qian, Yongtao Li, Yuwen Cheng, Shanying Wang, Ziwei Wang, Cheng Peng, Konglin Wu*, Jie Xu*, Ingo Manke, Chao Yang, Philipp Adelhelm, and Renjie Chen*, Binary Metal Single Atom Electrocatalysts with Synergistic Catalytic Activity toward High-Rate and High Areal-Capacity Lithium–Sulfur Batteries, Advanced Functional Materials, 2022, 32, 2208666.
(9) Xiang Chen,# Yongtao Li,# Hanlu Xing, Shunxin Fei, Lianbo Ma, Renyong Tu, Aijian Huang, Weng-Chon Cheong, Qinggang Liu, Rile Ge, Shoujie Liu, Dongming Liu, Xianwen Wei, Konglin Wu*, Xin Chen*, and Chen Chen*, Combination of Fe(II)-induced oxygen deficiency and metal doping strategy for construction of high efficiency water oxidation electrocatalysts under industrial-scale current density, Chemical Engineering Journal, 2022, 435, 135048.
(10) Xianwen Wang,# Qianqian Shi,# Zhengbao Zha*, Dongdong Zhu, Lirong Zheng, Luoxiang Shi, Xianwen Wei, Lian Lian, Konglin Wu*, and Liang Cheng*, Copper single-atom catalysts with photothermal performance and enhanced nanozyme activity for bacteria-infected wound therapy, Bioactive Materials, 2021, 6, 4389–4401.
科研项目:
(1) 国家自然科学基金(面上项目),22375005,2024.01–2027.12,50万,主持,在研;
(2) 国家自然科学基金(青年项目),21501004,2016.01–2018.12,25万,主持,已结题;
(3) 安徽省教育厅优秀青年教师培育重点项目,YQZD2023031,2023.10–2025.09,10万,主持,在研;
(4) 安徽省高等学校科学研究项目(重点项目),2022AH050323,2022.12–2024.12,10万,主持,在研;
(5) 安徽省高校协同创新项目,GXXT-2021-020,2021.08–2023.07,10万,协同单位主持,已结题。
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