
浙江大学博士,中国药科大学2022年高层次引进人才,副研究员,硕士研究生导师。至今在Nat. Commun., PNAS, Angew. Chem. Int. Ed.,Adv. Mater, Coord. Chem. Rev., Appl.Catal. B-Environ., Water Res.,等顶级知名期刊发表论文数篇。申请国内专利超20项,其中10项已获得国家专利局授权;申请PCT专利超5项。目前主持中国药科大学高层次引进人才启动资金(100万元),国家自然科学基金青年项目,江苏SC人才,江苏省青托等项目。曾获得江苏省优秀本科毕业论文指导教师,中国药科大学基层工会先进个人等荣誉称号。社会服务方面提供Chinese Chemical Letter (Q1), Medical Gas Research (Q2) 青年编委服务,Science Research (Q3) 编委服务等。
研究方向聚焦于环境催化和能源转化再生中的纳米催化过程机制研究与技术集成。
[1] 国家自然科学基金青年基金(2024-2027)
[2] 江苏省科协青年人才托举工程(2024-2026)
[3] 江苏省SC人才(2023-2025)
[4]中国药科大学高层次引进人才启动资金(2022-2028)
1) Sijin Zuo*, et al. Intrinsic strain of defect sites steering chlorination reaction for water purification, Nature Communications, 2025, 16, 2652.
2) Sijin Zuo*, et al. P-block Metal-based Catalysts: Hidden Gems for Hydrogen Peroxide Electrosynthesis, Advanced Materials, Revised.
3) Sijin, Zuo, et al. A Natural Oxygen-Harvesting Electrode Enables an Aeration-Free Electro-Driven Fenton Catalysis for in-situ Water Remediation, Angewandte Chemie Internation Edition, Accepted.
4) Sijin Zuo*, et al. A review of H2O2 electrosynthesis by 2-electron ORR and 2-electron WOR: From catalysts to electrochemical cells. Coordination Chemistry Reviews, Revised.
5) Sijin Zuo*, et al, Decipher the key role of ketone toward singlet oxygen evolution in Fenton-like process for water decontamination. Applied Catalysis B: Environmental, 339 (2023) 123100
6) Sijin Zuo, et al. Boosting Fenton-like reaction efficiency by co-construction of the adsorption and reactive sites on N/O co-doped carbon. Applied Catalysis B: Environmental, 301 (2022) 120783
7) Sijin Zuo, et al. Sandwich structure stabilized atomic Fe catalyst for highly efficient Fenton-like reaction at all pH values. Applied Catalysis B: Environmental, 282 (2021) 119551
8) Sijin Zuo, et al, Removal of antibiotic resistant bacteria and antibiotic resistance genes by an electrochemically driven UV/chlorine process for decentralized water treatment. Water Research, 2024, 265, 122298
9) Sijin Zuo*, et al, Conductivity-mediated in-situ electrochemical reconstruction of CuOx for nitrate reduction to ammonia. Nanoscale, 16 (2024) 13895-13904 (Invited Manuscript)
10) Sijin Zuo, et al. Atomically dispersed Fe motif-based electrocatalysts for hydrogen peroxide synthesis. ChemNanoMat, 2024, e202300476 (Invited Review)