刘国亮

2025-08-20  点击:[]


刘国亮

教授,博士生导师

武汉科技大学, 核磁共振与分子科学交叉研究院/化学与化工学院

研究领域:多相催化、二氧化碳转化

邮箱:liugl@wust.edu.cn

地址:武汉市青山区和平大道947号,青山校区教四楼5

招生专业:化学、化工、材料

教育经历

2010-092015-12, 武汉大学, 物理化学, 博士, 导师: 曾适之教授、洪昕林教授

2013-102015-09, 牛津大学, 无机化学, 联合培养博士研究生, 导师: 曾适之教授

2006-092010-06, 武汉大学, 材料化学, 学士

工作经历

2023.06-至今, 武汉科技大学核磁共振与分子科学交叉研究院/化学与化工学院,教授

2017.09-2023.06,武汉大学化学与分子科学学院,特聘副研究员

2016.01-2017.08,中国科学院兰州化学物理研究所,助理研究员

研究概况

一直从事废弃碳资源的资源化利用(如CO2加氢、生物质转化等)的多相催化研究,聚焦高性能金属/氧(硫、碳)化物多功能催化体系研制及反应机理研究工作。在Nature Chem.JACSAngew. Chem.Chem. Soc. Rev.Chem等权威期刊发表SCI论文40余篇单篇最高引用900次。主持国家自然科学基金面上/青年3项)、国家重点研究计划子课题2项)湖北省杰青等项目。入选湖北省楚天学者计划和 RSC JMCA新锐科学家(Emerging Investigators)。具体研究方向如下:

1)二氧化碳催化转化制高附加值化学品;

2固体废弃物(生物质塑料)降解升级制低碳化学品

3开发新型多相催化剂用于有机合成反应

4)发展原位红外、拉曼等谱学表征技术用于探究催化反应机制。

代表性论文

[1] T. Liu, H. Lu, G. Li*, W. Niu, R. A. Leeflang, T.-S. Wu, A. I. Dugulan, X. Yi, C. Liu, L. Zhao, X. Hong*, G. Liu*, S. C. E. Tsang, A. Zheng*, Unsaturated ZrOx sites boost C-C coupling for selective CO2 hydrogenation to olefins. J. Am. Chem. Soc. 2026, 148, 19925-19935.

[2] J. Zhou#, Y. Liu#, T. Liu*, X. Dai, Y. Qian, Q. Cai, Y. Wu*, G. Liu*, A. Zheng*, Edge sulfur vacancies on MoS2 enable room-temperature hydrodeoxygenation of 5-hydroxymethylfurfural. Angew. Chem. Int. Ed. 2026, e4384058.

[3] T. Liu#, Z. Liu#, S. Jiang, P. Peng, Z. Liu, A. D. Chowdhury*, G. Liu*, Selectivity control by zeolites during methanol-mediated CO2 hydrogenation processes. Chem. Soc. Rev. 2025, 54, 2726-2761.

[4] G. Liu, A. W. Robertson, M. M.-J. Li, W. C. H. Kuo, M. T. Darby, M. H. Muhieddine, Y.-C. Lin, K. Suenaga, M. Stamatakis, J. H. Warner and S. C. E. Tsang*, MoS2 monolayer catalyst doped with isolated Co atoms for the hydrodeoxygenation reaction, Nat. Chem. 2017, 9, 810-816.

[5] D. Xu, Y. Wang, M. Ding, X. Hong, G. Liu* and S. C. E. Tsang*, Advances in higher alcohol synthesis from CO2 hydrogenation. Chem 2021, 7, 849-881.

[6] T. Liu, D. Xu*, M. Song, X. Hong*, G. Liu*, K-ZrO2 interfaces boost CO2 hydrogenation to higher alcohols, ACS Catal. 2023, 13, 4667−4674

[7] D. Xu, H. Yang, X. Hong*, G. Liu* and S. C. E. Tsang, Tandem catalysis of direct CO2 hydrogenation to higher alcohols. ACS Catal. 2021, 11, 8978−8984.

[8] D. Xu, M. Ding, X. Hong* and G. Liu*, Mechanistic aspects of the role of K promotion on Cu-Fe-based catalysts for higher alcohol synthesis from CO2 hydrogenation. ACS Catal. 2020, 10, 14516-14526.

[9] D. Xu, M. Ding, X. Hong*, G. Liu* and S. C. E. Tsang, Selective C2+ alcohol synthesis from direct CO2 hydrogenation over a Cs promoted Cu-Fe-Zn catalyst. ACS Catal. 2020, 10, 5250-5260.

[10] T. Liu, X. Hong* and G. Liu*, In situ generation of Cu@3D-ZrOx framework catalyst for selective methanol synthesis from CO2/H2. ACS Catal. 2020, 1093-102.

[11] D. Xu, X. Hong* and G. Liu*, Highly dispersed metal doping to ZnZr oxide catalyst for CO2 hydrogenation to methanol: insight into hydrogen spillover. J. Catal. 2021, 393, 207-214.

[12] Z. Liu, T. Liu*, C. Qin, G. Liu*, A. Zheng*, Zirconia-mediated interfacial catalysis for CO2 hydrogenation. Chin. J. Catal. 2026, 84,1-24.

[13] Y. Zhou, Y. Wang, H. Lu, T. Liu,* X. Hong,* and G. Liu*, Highly Dispersed K- and Pd-Comodified Fe Catalyst for CO2 Hydrogenation to Higher Alcohols, ACS Sustainable Chem. Eng. 2024, 12(8), 3322-3330.

[14] B. Hu, Y. Yin, G. Liu*, S. Chen, X. Hong*, and S. C. E. Tsang, Hydrogen spillover enabled active Cu sites for methanol synthesis from CO2 hydrogenation over Pd doped CuZn catalysts. J. Catal. 2018, 359, 17-26.

[15] L. Wang, T. Liu*, M. Hu, P. Peng, G. Liu* and A. Zheng*, Highly-dispersed ZrOx modulates C-O bond activation for boosting CO2 hydrogenation to higher alcohols. Chem. Commun. 2026, 62, 1910-1914.

[16] T. Liu, C. Qin,* Z. Wang, L. Wang, G. Liu*, A. Zheng*, Tailoring strong Brønsted acid sites in HZSM-5 for selective aromatics production from CO2 hydrogenation. Chem. Commun. 2025, 61, 19708-19711.



 

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