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(1) Li Renhong; Kobayashi, H.; Tong, J.; Yan, X.; Tang, Y.; Zou, S.; Jin, J.; Yi, W.; Fan, J., Radical-Involved Photosynthesis of AuCN Oligomers from Au Nanoparticles and Acetonitrile. Journal of the American Chemical Society 2012, 134, (44), 18286-18294. (影响因子=12.113)
(2) Li Renhong; Kobayashi, H.; Guo, J.; Fan, J., Visible-light-driven surface reconstruction of mesoporous TiO2: toward visible-light absorption and enhanced photocatalytic activities. Chemical Communications 2011, 47, (30), 8584-8586. (影响因子=6.834)
(3) Li Renhong; Kobayashi, H.; Guo, J.; Fan, J., Visible-Light Induced High-Yielding Benzyl Alcohol-to-Benzaldehyde Transformation over Mesoporous Crystalline TiO2: A Self-Adjustable Photo-oxidation System with Controllable Hole-Generation. Journal of Physical Chemistry C 2011, 115, (47), 23408-23416. (影响因子=4.772)
(4) Li Renhong; Chen, W.; Kobayashi, H.; Ma, C., Platinum-nanoparticle-loaded bismuth oxide: an efficient plasmonic photocatalyst active under visible light. Green Chemistry 2010, 12, (2), 212-215. (影响因子=8.02)
(5) Li Renhong; Chen, W.; Wang, W., Magnetoswitchable controlled photocatalytic system using ferromagnetic Fe-0-doped titania nanorods photocatalysts with enhanced photoactivity. Separation and Purification Technology 2009, 66, (1), 171-176. (影响因子=3.091)
(6) Li Renhong; Kobayashi, H.; Yan, X.; Fan, J., Dioxygen activation at room temperature during controllable and highly efficient acetaldehyde-to-acetic acid oxidation using a simple iron(III)-acetonitrile complex. Catalysis Today 2014, 233, 140-146.(影响因子=3.893)
(7) Yan, X.; Zhu, X.; Li Renhong; Chen, W., Au/BiOCl heterojunction within mesoporous silica shell as stable plasmonic photocatalyst for efficient organic pollutants decomposition under visible light. Journal of Hazardous Materials 2016, 303, 1-9. (通讯作者;影响因子=4.529)
(8) Yi, W.; Yan, X.; Li Renhong; Wang, J.-Q.; Zou, S.; Xiao, L.; Kobayashi, H.; Fan, J., A new application of the traditional Fenton process to gold cyanide synthesis using acetonitrile as a cyanide source. RSC Advances 2016, 6, (20), 16448-16451.(通讯作者;影响因子=3.84)
(9) Wang, X.; Yan, X.; Li Renhong; Xiao, L.; Ma, G.; Dai, Y.; Fan, J., High Density Gold Nanoparticles Within Three-Dimensionally Mesoporous SBA-15: Adsorption Behavior and Optical Properties. Journal of Nanoscience and Nanotechnology 2015, 15, (9), 7060-7067. (通讯作者;影响因子=1.556)
(10) Hong, Y.; Yan, X.; Liao, X.; Li Renhong; Xu, S.; Xiao, L.; Fan, J., Platinum nanoparticles supported on Ca(Mg)-zeolites for efficient room-temperature alcohol oxidation under aqueous conditions. Chemical Communications 2014, 50, (68), 9679-9682. (通讯作者;影响因子=6.834)
(11) Tang, Y.; Xu, S.; Dai, Y.; Yan, X.; Li Renhong; Xiao, L.; Fan, J., Solid phase metallurgy strategy to sub-5 nm Au-Pd and Ni-Pd bimetallic nanoparticles with controlled redox properties. Chemical Communications 2014, 50, (2), 213-215.
(12) Qiao, P.; Xu, S.; Zhang, D.; Li Renhong; Zou, S.; Liu, J.; Yi, W.; Li, J.; Fan, J., Sub-10 nm Au-Pt-Pd alloy trimetallic nanoparticles with a high oxidation-resistant property as efficient and durable VOC oxidation catalysts. Chemical Communications 2014, 50, (79), 11713-11716.
(13) Zou, S.; Li Renhong; Kobayashi, H.; Liu, J.; Fan, J., Photo-assisted cyanation of transition metal nitrates coupled with room temperature C-C bond cleavage of acetonitrile. Chemical Communications 2013, 49, (19), 1906-1908.
(14) Yan, X.; Wang, X.; Tang, Y.; Ma, G.; Zou, S.; Li Renhong; Peng, X.; Dai, S.; Fan, J., Unusual Loading-Dependent Sintering-Resistant Properties of Gold Nanoparticles Supported within Extra-large Mesopores. Chemistry of Materials 2013, 25, (9), 1556-1563.
(15) Yan, X.; Wang, X.; Tang, Y.; Ma, G.; Zou, S.; Li Renhong; Peng, X.; Dai, S.; Fan, J., Ordered, extra-large mesopores with highly loaded gold nanoparticles: a new sintering- and coking-resistant catalyst system. Chemical Communications 2013, 49, (66), 7274-7276.
(16) Wang, J.; Liu, X.; Li Renhong; Qiao, P.; Xiao, L.; Fan, J., TiO2 nanoparticles with increased surface hydroxyl groups and their improved photocatalytic activity. Catalysis Communications 2012, 19, 96-99.