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[1]G. Xu, Z. Sun, K. He, X. He, K. Liu, J. Liu, B. Zhou, Y. Deng, W. Liu, Electrolytic upcycling of PET waste plastics for energy-efficient hydrogen evolution, Green Chemistry, 27 (2025) 5471-5481.
[2]G. Xu, H. Ge, K. He, Z. Sun, X. He, J. Liu, B. Zhou, Y. Deng, J. Song, W. Liu, Efficient waste polyester plastics recycling in organic–inorganic acid catalytic system, Chemical Engineering Journal, 511 (2025) 161791.
[3]W. Tang, L. Zhang, T. Qiu, H. Tan, Y. Wang, W. Liu, Y. Li, Efficient conversion of biomass to formic acid coupled with low energy consumption hydrogen production from water electrolysis, Angewandte Chemie International Edition, 62 (2023) e202305843.
[4]L. Tang, W. Xu, Z. Sun, W. Li, G. Xu, X. He, Y. Deng, W. Sun, B. Zhou, W. Liu, Efficient Electrochemical Reforming of Biomass Carbohydrates to Syngas Catalyzed by Lacunary Phosphomolybdic Acid, Industrial & Engineering Chemistry Research, (2025).
[5]W. Li, W. Xu, Z. Sun, L. Tang, G. Xu, X. He, Y. Deng, W. Sun, B. Zhou, J. Song, A tungsten polyoxometalate mediated aqueous redox flow battery with high open-circuit voltage up to 2 V, Nature Communications, 16 (2025) 4654.
[6]Wei Liu, Wenqin You, Wei Sun, Weisheng Yang, Akshay Korde, Yutao Gong, Yulin Deng. Ambient-pressure and low-temperature upgrading of lignin bio-oil to hydrocarbons using a hydrogen buffer catalytic system. Nature Energy, 2020, 5: 759-767. DOI: 10.1038/s41560-020-00680-x.
[7]Wei Liu, Wenqin You, Yutao Gong, and Yulin Deng. High-efficiency electrochemical hydrodeoxygenation of bio- phenols to hydrocarbon fuels by a superacid-noble metal particle dual-catalyst system. Energy & Environmental Science, 2020, 13 (3): 917-927. DOI: 10.1039/c9ee02783a.
[8]Wei Liu, Wei Mu, Mengjie Liu, Xiaodan Zhang, Hongli Cai, and Yulin Deng. Solar-induced direct biomass-to- electricity hybrid fuel cell using polyoxometalates as photocatalyst and charge carrier. Nature communications, 2014, 5 3208, DOI: 10.1038/ncomms4208.
[9]Wei Liu, Yong Cui, Xu Du, Zhe Zhang, Zisheng Chao, and Yulin Deng. High efficiency hydrogen evolution from native biomass electrolysis. Energy & Environmental Science, 2016, 9 (2): 467-472, DOI: 10.1039/C5EE03019F.
[10]Wei Liu, Wei Mu, and Yulin Deng. High-Performance Liquid-Catalyst Fuel Cell for Direct Biomass-into- Electricity Conversion (Very Important paper (VIP) ). Angewandte Chemie International Edition, 2014, 126 (49): 13776-13780, DOI:10.1002/ange.201408226.
[11]Wei Liu, Yutao Gong, Weibing Wu, Weisheng Yang, Congmin Liu, Yulin Deng, and Zi-Sheng Chao. Efficient Biomass Fuel Cell Powered by Sugar with Photo-and Thermal-Catalysis by Solar Irradiation (Cover featured). ChemSusChem, 2018, 11: 2229, DOI:10.1002/cssc.201800719.
[12]Wei Liu, Yutao Gong, Andrew Tricker, Gaoxiang Wu, Congmin Liu, Zi-Sheng Chao, and Yulin Deng. Fundamental Study Toward Improving the Performance of High-Moisture Biomass Fueled Redox Flow Fuel Cell. Industrial & Engineering Chemistry Research, 2020, 59 (10): 4817-4828, DOI: 10.1021/acs.iecr.9b06982.
[13]Wei Liu, Feifei Sun, Lu Jiang, J Carson Meredith, and Yulin Deng. Surface Structure Patterning for Fabricating Non-fluorinated Superhydrophobic Cellulosic Membranes. ACS Applied Polymer Materials, 2019, 1 (5): 1220- 1229, DOI:10.1021/acsapm.9b00215.
[14]Wei Liu , Congmin Liu , Parikshit Gogoi and Yulin Deng. Overview of Biomass Conversion to Electricity and Hydrogen and Recent Developments in Low-Temperature Electrochemical Approaches. Engineering, 2020, DOI:10.1016/j.eng.2020.02.021.
[15]Wei Liu, Yutao Gong, Xueping Li, Cai-Wu Luo, Congmin Liu, and Zi-Sheng Chao. A TiO2/C catalyst having biomimetic channels and extremely low Pt loading for formaldehyde oxidation. RSC Advances, 2019, 9 (7): 3965- 3971, DOI:10.1039/C8RA10314C.
[16]Jian Gong, Wei Liu (Co-1st author), Xu Du, Congmin Liu, Zhe Zhang, Feifei Sun, Le Yang, Dong Xu, Hua Guo, and Yulin Deng. Direct Conversion of Wheat Straw into Electricity with a Biomass Flow Fuel Cell Mediated by Two Redox Ion Pairs. ChemSusChem, 2017, 10 (3): 506-513, DOI:10.1002/cssc.201601441.
[17]Weibing Wu, Wei Liu (Co-1st author), Wei Mu, and Yulin Deng. Polyoxymetalate liquid-catalyzed polyol fuel cell and the related photoelectrochemical reaction mechanism study. Journal of Power Sources, 2016, 318 86-92, DOI:10.1016/j.jpowsour.2016.03.074.
[18]Yongfeng Li, Wei Liu (Co-1st author), Zhe Zhang, Xu Du, Lin Yu, and Yulin Deng. A self-powered electrolytic process for glucose to hydrogen conversion. Communications Chemistry, 2019, 2 (1): 67, DOI:10.1038/s42004- 019-0169-5.
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