研究领域
多相催化、能源化学及化学能源
(1)从合成气高效生产液体燃料的高效催化剂开发及相关工艺的优化设计;(2)燃料电池车载制氢的关键技术;(3)CO2的催化活化及高效转化等方面的基础及应用基础研究。
近期论文
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Zhong-Wen Liu*, Chan Wang, Wei-Bin Fan, Zhao-Tie Liu, Qing-Qing Hao, Xu Long, Jian Lu, Jian-Guo Wang, Zhang-Feng Qin, Dang Sheng Su. V2O5/Ce0.6Zr0.4O2-Al2O3 as an efficient catalyst for the oxidative dehydrogenation of ethylbenzene with CO2. ChemSusChem, 2011, 4(3): 341-345
Chan Wang, Wei-Bin Fan, Zhao-Tie Liu, Jian Lu, Zhong-Wen Liu*, Zhang-Feng Qin, Jian-Guo Wang. The dehydrogenation of ethylbenzene with CO2 over V2O5/CexZr1-xO2 prepared with different methods. J. Mol. Catal. A: Chem, 2010, 329: 64-70
Juan He, Zhong-Wen Liu*, Wei-Bin Fan, Zhao-Tie Liu, Jian Lu, Jianguo Wang. A general method for faithful replication of keratin fibers with metal oxides. J. Mater. Chem., 2010, 20(45): 10107-10109
Qing-Qing Hao, Guang-Wei Wang, Zhao-Tie Liu, Jian Lu, Zhong-Wen Liu*. Co/pillared Clay Bifunctional Catalyst for Controlling the Product Distribution of Fischer-Tropsch Synthesis. Ind. Eng. Chem. Res., 2010, 49(19): 9004-9011
Fen-Yan Wei, Zhong-Wen Liu*, Jian Lu, Zhao-Tie Liu. Synthesis of mesoporous MCM-48 using fumed silica and mixed surfactants. Micropor. Mesopor. Mater., 2010, 131(1-3): 224-229
Qi-Jian Zhang*, Feng Du, Xinxin He, Zhao-Tie Liu, Zhong-Wen Liu*, Yingchun Zhou. Hydrogen production via partial oxidation and reforming of dimethyl ether. Catal. Today, 2009, 146(1-2): 50-56
Xu Long, Zhao-Tie Liu, Zhong-Wen Liu*, Xiaohong Li*, Kaoru Fujimoto. The Contact State Related Phenomena of Hybrid Catalysts for the Modified Fischer-Tropsch Synthesis. Catal. Lett., 2009, 131(3-4): 388-392
Zhong-Wen Liu, Xiaohong Li, Kenji Asami, Kaoru Fujimoto. Syngas to iso-paraffins over Co/SiO2 combined with metal/zeolite catalysts. Fuel Process. Technol., 2007, 88: 165-170
Zhong-Wen Liu, Xiaohong Li, Kenji Asami, Kaoru Fujimoto. High performance Pd/beta catalyst for the production of gasoline-range iso-paraffins via modified Fischer-Tropsch teaction. Appl. Catal. A, 2006, 300: 162-169
Zhong-Wen Liu, Ki-Won Jun, Hyun-Seog Roh, Sang-Eon Park. Hydrogen production for fuel cells through methane reforming at low temperatures. J. Power sources, 2002, 111: 283-287