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谢振朗

发布日期:2020-10-28    作者:spkx      编辑:spkx     审核人:spkx     来源: 食品科学与工程学院    点击:

谢振朗

位:博士

研究方向:合成化学、吸附分离、分析检测

电子邮箱:zlxie@gdou.edu.cn

通讯地址:广东省阳江市罗琴路1

个人简介:谢振朗,博士毕业于厦门大学固体表面物理化学国家重点实验室。主要从事功能配位化合物的设计合成、晶态多孔材料的吸附与分离应用、固氮酶催化作用机理及其化学模拟、过渡金属催化剂光/电催化产氢、食品安全快速检测分析等研究。迄今为止,在ACS NanoACS Applied Materials & InterfacesInorganic ChemistryDalton Transactions等国际学术期刊发表学术论文30篇。

教育背景

2020.09–2024.06  厦门大学     物理化学        博士

2017.09–2020.06  华南理工大学 化学工程        硕士

2013.09–2017.06  广东工业大学 化学工程与工艺  学士

工作背景

2024.07–至今 广东海洋大学食品科学与工程学院  讲师

科研项目

1. 国家自然科学基金面上项目,化学模拟和同步辐射方法研究固氮酶P-簇氧化还原性能 No. 22179110),2022.01–2025.12,参与

2. 国家自然科学基金面上项目,新型具有电和光催化产氢双重功能催化剂的设计与研究 No. 21875074),2019.01–2022.12,参与

代表性学术论文

1. Z. L. Xie, Z. H. Zhou*, Octa- and tetradecanuclear mixed-valent vanadium(III/IV) malates with triazoles: Gas adsorptions, chiral interface recognition, and in situ decarboxylation. ACS Appl. Mater. Interfaces 2023, 15, 35710–35719.

2. Z. L. Xie, W. T. Jin, Z. H. Zhou*, Analyses of the electronic structures of FeFe-cofactors compared with FeMo- and FeV-cofactors and their P-clusters. Dalton Trans. 2024, 53, 6529–6536. (封面文章)

3. Z. L. Xie, Z. H. Zhou*, Asymmetric dinuclear, hexanuclear and octanuclear oxovanadium citrates with triazolates: Novel mixed-ligands and mixed-valence complexes. Dalton Trans. 2024, 53, 186–195.

4. Z. L. Xie, D. L. An, W. Z. Weng, Z. H. Zhou*, Successive constructions of regular tetra-, hexa- and octanuclear microporous polyoxovanadates(III) for gas adsorption. Dalton Trans. 2022, 51, 11286–11294.

5. S. S. Zhu#, Z. L. Xie# (共同一作), L. Deng, S. Y. Wang, L. B. Ni, Z. H. Zhou*, Protonated and deprotonated vanadyl imidazole tartrates for the mimics of the vanadium coordination in FeV-cofactor of V-nitrogenase. Dalton Trans. 2023, 52, 16849–16857.

6. Z. L. Xie, W. X. Jiang, N. S. Wang, S. Z. Zhan*, An efficient catalyst based on a water-soluble cobalt(II) complex of S,S’-bis(2-pyridylmethyl)-1,2-thiobenzene for electrochemical- and photochemical-driven hydrogen evolution. Appl. Organomet. Chem. 2020, 34, e5390.

7. J. Sun#, X. D. Yan#, L. Z. Wang#, Z. L. Xie# (共同一作), G. L. Tian, L. Wang, A. He, S. M. Li, Q. X. Guo, C. L. Men, J. L. He*, H. Shen*, Decorating an anticuboctahedral copper kernel with labile surface coatings for controlling optical and catalytic properties. Inorg. Chem. 2023, 62, 9005–9013.

8. Z. L. Xie, L. Deng, C. Yuan, Z. H. Zhou*, Triazole-assisted trinuclear oxidovanadium(IV) complexes for gas adsorptions. Inorg. Chem. Commun. 2021, 129, 108661.

9. Z. L. Xie, W. X. Jiang, S. Z. Zhan*, S. P. Wu, Design, synthesis and characterization of a co-photocatalyst based on a copper(II) complex of S,S′-bis(2-pyridylmethyl)-1,2-thioethane for hydrogen production under visible light. Inorg. Chem. Commun. 2019, 107, 107464.

10. Z. L. Xie, W. T. Jin, Z. H. Zhou*, Reconsideration of the P-clusters in VFe proteins using the bond-valence method: Towards their electron transfer and protonation. Acta. Crystallogr. D 2025, 81, 77–84.

11. Z. L. Xie, C. Yuan, Z. H. Zhou*, Statistical analyses of the oxidized P-clusters in MoFe proteins using the bond-valence method: Towards their electron transfer in nitrogenases. Acta. Crystallogr. D 2023, 79, 401–408.

12. Z. L. Xie, C. Yuan, W. T. Jin, Z. H. Zhou*, Mixed-ligand oxidovanadium(IV/V) complexes chelated by α-hydroxycarboxylate and 2-(1H-imidazol-2-yl)pyridine: Localized structures and gas adsorption. Eur. J. Inorg. Chem. 2022, e202100877.

13. Z. L. Xie, W. X. Liu, N. S. Wang, S. Z. Zhan*, Synthesis, characterization, and electrocatalytic behavior for hydrogen evolution of a dinuclear copper(II) complex of 1-[(2-carboxymethyl) benzene]-3-[2-carboxybenzene] triazene. Z. Anorg. Allg. Chem. 2020, 646, 1458–1463.

14. S. J. Sun, Z. L. Xie, Y. R. Yang*, S. P. Wu*, Hybrid energy storage mechanisms for sulfur-decorated Ti3C2 MXene anode material for high-rate and long-life sodium-ion batteries. Chem. Eng. J. 2019, 366, 460.

15. S. M. Li, Y. Liu, X. K. Tang, Z. Xu, L. S. Lin, Z. L. Xie, R. Huo, Z. A. Nan, Z. J. Guan*, H. Shen*, N. F. Zheng*, Chiroptical activity amplification of chiral metal nanoclusters via surface/interface solidification. ACS Nano 2024, 18, 13675–13682.