左四进

制药环境工程;碳中和;原子催化与纳米技术集成;机器学习与第一性原理

发布者:朱功春发布时间:2024-07-03浏览次数:1005

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)