研究成果

    1.Engineering the TiO2–Graphene Interface to Enhance Photocatalytic H2 Production.Lichen Liu, Zhe Liu, Annai Liu, Xianrui Gu,Chengyan Ge,Fei Gao, Lin Dong. ChemSusChem , 7, 618-626 (2014). 


    2.Direct synthesis of Ti-SBA-15 in the self-generated acidic environment and its photodegradation of Rhodamine B. Hongliang Zhang, Changjin Tang,Yuanyuan Lv, Fei Gao, Lin Dong. J. Porous Mater ,21, 63-70 (2014). 


    3.Correlation between the physicochemical properties and catalytic performances of CexSn1–xO2 mixed oxides for NO reduction by CO.Xiaojiang Yao, Yan Xiong, Weixin Zou, Lei Zhang, Shiguo Wu, Xian Dong, Fei Gao, Yu Deng, Changjin Tang,Zhuo Chen, Lin Dong, Yi Chen. Applied Catalysis B: Environmental, 144, 152-165 (2014). 


    4.Efficient fabrication of active CuO-CeO2/SBA-15 catalysts for preferential oxidation of CO by solid state impregnation. Changjin Tang, Jingfang Sun, Xiaojiang Yao, Yuan Cao, Lichen Liu, Chengyan Ge, Fei Gao, Lin Dong. Applied Catalysis B: Environmental , 146, 201-212 (2014). 


    5.Investigation of the structure, acidity,and catalytic performance of CuO/Ti0.95Ce0.05O2 catalyst for the selective catalytic reduction of NO by NH3 at low temperature.Xiaojiang Yao, Lei Zhang,Lulu Li, Lichen Liu, Yuan Cao, Fei Gao, Yu Deng, Changjin Tang, Zhuo Chen, Lin Dong, Yi Chen. Applied Catalysis B: Environmental, 150-151, 315-329 (2014). 


    6.Influence of CeO2 modification on the propertiesof Fe2O3–Ti0.5Sn0.5O2 catalyst for NO reduction by CO.Lihui Dong,Bing Zhang,Changjin Tang,Bin Li, Liya Zhou,Fuzhong Gong, Baozhen Sun, Fei Gao, Lin Dong, Yi Chen.Catalysis Science & Technology , 4, 482-493 (2014).   


    7.Influence of MnO2 modification methods on the catalytic performance of CuO/CeO2 for NO reduction by CO. Xiaojiang Yao,Yan Xiong,Jingfang Sun,Fei Gao, Yu Deng, Changjiin Tang, Lin Dong. JOURNAL OF RARE EARTHS , 32, 131-138 (2014). 


    8.Promotional effect of CO pretreatment on CuO/CeO2 catalyst for catalytic reduction of NO by CO .Xianrui Gu,Hao Li,Lichen Liu,Changjiin Tang,Fei Gao, Lin Dong. JOURNAL OF RARE EARTHS , 32, 139-145 (2014). 


    9.Improving the dispersion of CeO2 on γ-Al2O3 to enhance the catalytic performances of CuO/CeO2/γ-Al2O3 catalysts for NO removal by CO . Chengyan Ge, Lichen Liu, Zhuotong Liu, Yuan Cao,Changjiin Tang, Fei Gao, Lin Dong. Catalysis Communications ,51, 95-99 (2014). 


    10.Comparative study on the catalytic CO oxidation properties of CuO/CeO2 catalysts prepared by solid state and wet impregnation.Jingfang Sun, Lei Zhang, Chengyan Ge, Changjiin Tang, Lin Dong. Chinese Journal of Catalysis , 35,1347-1358 (2014). 


    11.Research progress on the catalytic elimination of atmospheric molecular contaminants over supported metal-oxide catalysts: A review. Xiaojiang Yao, Changjiin Tang, Fei Gao, Lin Dong. Catalysis Science & Technology ,4, 2814-2829 (2014). 


    12.Effect of CO-pretreatment on the CuO-V2O5/γ-Al2O3 catalyst for NO reduction by CO,Yan Xiong, Xiaojiang Yao, Changjin Tang, Lei Zhang, Yuan Cao, Yu Deng, Fei Gao, Lin Dong. Catalysis Science & Technology ,4, 4416-4425 (2014). 


    13.Synthesis and Catalytic Activity of Fe-MCM-41 Nanoparticles, Hongliang Zhang, Changjin Tang, Fei Gao, Lin Dong. Advanced Materials Research, 933, 17-22 (2014). 


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