吴景程

2025-11-08  点击:[]

68b91a3ca9ae38fb8b1e8d9e0056ce9吴景程

武汉科技大学, 化学与化工学院, 副教授,硕士生导师

出生年月:1991-06

研究领域:电化学、生物质转化

邮箱:wujc@wust.edu.cn

地址:湖北省武汉市青山区和平大道947号

教育经历

2014-09至2020-09, 中国科学院广州能源研究所, 化学工程, 博士

2017-10至2019-09, 特拉华大学, 化学工程, 联合培养博士研究生

2010-09至2014-06, 湘潭大学, 化学工程与工艺, 学士

工作经历

2023.10-至今,武汉科技大学化学与化工学院,副教授

2022.09-2023.03,中国科学院广州能源研究所,副研究员

2020.10-2022.08,湖南大学,博士后

研究概况

主要研究方向为生物质小分子化合物电催化转化制备高附加值产品以及探究模型界面上的电催化反应机制。在国际高水平期刊,包括JACS,Angew. Chem. Int. Ed., ACS Nano, ACS Catal., J. Catal., J. Energ.Chem., Appl. Catal. B. Environ, Bioresour. Technol.等权威期刊上发表SCI论文20余篇。主持国家自然科学基金青年项目、湖北省自然科学基金面上项目等项目。

具体研究方向如下:

(1)生物质电催化转化制备高附加值产品,如航空燃料,氨基酸;

(2)开展电化学PEM电解水制氢、钙钛矿太阳能电池等;

(3)开展生物质高效转化技术,如溶剂自供氢技术、C-C偶联等;

(4)发展原位红外、拉曼等谱学表征技术用于探究电催化反应机制。

代表性论文

[1] Wu JC, Xu L, Li Y, Lu Y, Kong Z, Li S,Zou Y, Wang S. Anodic cross-coupling of biomass platform chemicals to sustainable bio-jet fuel precursors. Journal of the American Chemical Society. 2022, 144, 23649-23656. (封面论文)

[2] Wu JC, Xu L, Kong Z, Gu Kai, Lu Y, Zou Y, Wang S. Integrated tandem-electrochemical- chemical-electrochemical coupling of biomass and nitrate to sustainable alanine. Angew. Chem. Int. Ed. 2023, 62, e202311196.

[3] Wu JC, Kong Z, Li Y, Lu L, Wang H, Li Y, Zou Y, Wang S. Unveiling the adsorption behavior and

redox properties of PtNi nanowire for biomass-derived molecules electrooxidation. ACS Nano. 2022, 16, 21518-21526.

[4] Lu L, Wen C, Wang H, Li Y, Wu JC,* Wang CG.* Tailoring the electron structure and substrate adsorption energy of Ni hydroxide via Co doping to enhance the electrooxidation of biomass-derived

chemicals. Journal of Catalysis. 2023, In press.

[5] Wu JC, Liang D, Song X, Liu T, Xue T, Wang S, Zou Y, Sulfonic groups functionalized Zr-metal

organic framework for highly catalytic transfer hydrogenation of furfural to furfuryl alcohol. Journal

of Energy Chemistry. 2022,71,411-417.

[6] Wu JC, Liu C, Zhu Y, Song X, Wen C, Zhang X, Wang C, Ma L, Understanding the geometric and

electronic factors of PtNi bimetallic surfaces for efficient and selective catalytic hydrogenation of

biomassderived oxygenates. Journal of Energy Chemistry. 2021, 60, 16-24.

[7] Wu JC, Zhu Y, Liao P, Xu T, Lu L, Liu Q, Ma L, Wang C, Sustainable metal-lignosulfonate catalyst for efficient catalytic transfer hydrogenation of levulinic acid to γ-valerolactone. Applied Catalysis A:

General. 2022, 635, 118556.

[8] Liang D, Alam A, Lu L, Fan R, Xu J, Wu JC.* Water-plasma-enhanced and phase-separation-assisted

extraction of microalgal lipid for biodiesel production. Bioresource Technology. 2022, 354, 127198.

[9] Liang D,# Wu JC,# Zou Y, Zheng J, Wang S. Efficiently and Selectively Photocatalytic Cleavage of C-C Bond by C3N4 Nanosheets: Defect-Enhanced Engineering and Rational Reaction Route. Submitted to Advanced Materials. Applied Catalysis B-Environmental. 2022, 317, 121690.

[10] Liang D,# Wu JC,# Lu L, Fan R, Xu J, Alam A. Coupling with in-situ electrochemical reactive chlorine species generation and two-phase partitioning method for enhanced extraction efficiency in microalgal biodiesel production. Bioresource Technology., 2022, 364, 128100.

[11] Xia ZC,# Li YY,# Wu JC,# Huang YC, Zhao W, Wang SY, Zou YQ. Promoting the electrochemical hydrogenation of furfural by synergistic Cu0−Cu+ active sites. Science China Chemistry. 2022, 65, 2588-2595.

[12] Wu JC, Murphy B, Gould N, Wang CG, Ma LL, Xu BJ. A FTIR Study of the Acidity of in situ Generated Brønsted Sites on NaY via Displacement Reactions. ChemCatChem. 2019, 11, 3254-3263.

[13] Wu JC, Zhang XH, Chen Q, Chen L, Liu Q, Wang CG, Ma LL. One-pot Hydrogenation of Furfural into Tetrahydrofurfuryl Alcohol under Ambient Conditions over PtNi Alloy Catalyst. Energy& fuels. 2020, 34, 2178–2184.

Wu JC, Alam MA, Pan Y, Huang DL, Wang ZM, Wang TJ. Enhanced Extraction of Lipids from Microalgae with Eco-friendly Mixture of Methanol and Ethyl acetate for Biodiesel Production. Journal of the Taiwan Institute of Chemical Engineers. 2017, 71, 323-329

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