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吕天平

文章来源:曹小华     发布时间:2025年03月19日     点击数:

姓名:吕天平

联系方式:20240057@kust.edu.cn

研究领域:纳米功能材料的合成及其光电催化性能的研究

主讲课程:本科《过程设备设计》

个人简介:吕天平,男,中共党员,工学博士。2022年博士毕业于云南大学材料科学与工程专业,主要从事纳米功能材料的合成及其光电催化性能研究,近五年发表学术论文20余篇,其中第一作者/通讯作者在ACS Catal.、Chem. Eng. J.、Chem. Commun.等期刊发表SCI论文8篇。

主要研究项目:

[1]云南省基础研究专项——青年项目,5万元,2025.03-2028.02,在研,主持

[2]云南省科技型中小微企业创新发展项目,56.4万元,2024.03-2025.12,在研,主持

[3]昆明理工大学高层次人才引进经费,80万元,2024.02-2032.07,在研,主持

代表性专著与论文:

[1] Fuxiu Cao, Yue Wang, Dingbin Zhu, Tianping Lv*, Wenlong Jia, Huai Liu, Rui Zhang, Lincai Peng, Junhua Zhang*. Enhanced nitrogen vacancy density induced by sulfur doping on carbon nitride facilitates selective lactic acid production. Molecular Catalysis, 2025, 576: 114957.

[2] Yijun He, Tianping Lv*, Tong Zhou, et al. Cu doping enhanced ZnIn2S4/TiO2(VO) Z-scheme heterojunction for efficient photocatalytic overall water splitting. International Journal of Hydrogen Energy, 2024, 57: 491-499.

[3] Tong Zhou, Tianping Lv*, Bin Xiao, et al. Cu and Pd dual-single-atoms anchored titanium dioxide for remarkable photocatalytic H2evolution efficiency. Chemical Engineering Journal, 2023, 478: 147372.

[4] Yijun He, Tianping Lv*, Bin Xiao, et al. Research progress of MIL-125 and its modifications in photocatalytic hydrogen evolution. Journal of Materials Chemistry C, 2023, 11: 6800-6818.

[5] Yijun He, Hongshun Zheng, Tianping Lv*, et al. MOFs-derived TiO2composite ZnIn2S4to construct Z-scheme heterojunction for efficient photocatalytic hydrogen evolution under visible light. Journal of Environmental Chemical Engineering, 2023, 11: 111224.

[6] Bin Xiao, Tianping Lv*, Tong Zhou, et al. Insights into the interaction effect of CuSA-ZnS for enhancing the photocatalytic hydrogen evolution. ACS Catalysis, 2023, 13: 12904-12916.

[7] Tianping Lv, Bin Xiao, Fanjie Xia, et al. Insights into synergistic effect of Pd single atoms and sub-nanoclusters on TiO2for enhanced photocatalytic H2evolution. Chemical Engineering Journal, 2022, 450: 137873.

[8] Tianping Lv, Bin Xiao, Shiqiang Zhou, et al. Rich oxygen vacancies, mesoporous TiO2derived from MIL-125 for highly efficient photocatalytic hydrogen evolution. Chemical Communications, 2021, 57: 9704-9707.

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