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19篇 您的检索式:作者名="Linic S"
    题名 作者 年代 出处 被引量
1Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy显示文摘Linic S Christopher P Ingram D B 2011Nature Materials2011,10,:1
2Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy显示文摘Linic S Christopher P Ingram D B 2011Nature Materials2011,10,:1
3Photochemical trans- formations on plasmonie metal nanoparticles 显示文摘Linic S Aslam U Boerigter C 2015Nat Ma- ter2015,14,6:1
4Water Splitting on Composite Plasmonic-Metal/Semiconductor Photoelectrodes:Evidence for Selective Plasmon-Induced Formation of Charge Carriers near the Semiconductor Surface显示文摘Ingram DB Linic S 0,,14:1
5Engineering selectivity in heterogeneous catalysis: Ag nanowires as selective ethylene epoxidation catalysts 显示文摘CHRISTOPHER P LINIC S 2008J Am Chem Soc2008,130,11:1
6Plasmonic - metal nanostructures for efficient conversion of solar to chemical energy显示文摘Linic S Christopher P Ingram D B 2011Nat Mater2011,,10:1
7Shape-and size-specific chemistry of Ag nanostructures in catalytic ethylene epoxidation显示文摘Christopher P Linic S 2010Chem Cat Chem2010,2,1:1
8Control of Ethylene Epoxidation Selectivity by Surface Oxametallacycles显示文摘Linic S Berteau M 2003J Am Chem Soc2003,125,14:1
9Plasmonic-metal nano- structures for efficient conversion of solar to chemical energy 显示文摘Linic S Christopher P Ingrain D B 2011Nat Mater2011,10,12:1
10Water splitting on composite plasmonic-metal/semiconductor photoelectrodes: evidence for selective plasmon-induced formation of charge carriers near the semiconductor surface显示文摘Ingram D B Linic S 2011American Chemistry Society2011,133,14:1
11Plasmonic-metal nanostructures for efficient conversion of solar to chemi- cal energy 显示文摘Linic S Christopher P Ingram D B 2011Nature Materials2011,10,:1
12Water splitting on composite plasmonic-metal/semiconductor photoelectrodes :evidence for selective plasmon-induced formation of charge carriers near the semiconductor surface 显示文摘ngram D B Linic S 2011Journal of the American Chemical Society2011,133,14:1
13Visible-light-enhanced catalytic oxidation reactions on plasmonic silver nano- structures显示文摘Christopher P Xin H L Linic S 2011Nature Chemistry2011,3,2:1
14Plasmonic-metal nanostructures for efficient conversion of solar to chemical energy显示文摘Linic S Christopher P Ingram D B 2011Nature Materials2011,10,12:1
15Promotion of the long-term stability of reforming Ni catalysts by surface alloying显示文摘E Nikolla J Schwank S Linic 2007Journal of Catalysis2007,250,:1
16On the mechanism of Cs promotion in ethylene epoxidation on Ag显示文摘Linic S Barteau M A 2004J Am Chem Soc2004,126,26:1
17Hydrocarbon steam refor-ming on Ni alloys at solid oxide fuel cell operating conditions显示文摘E Nikolla J Schwank S Linic 2008Catalysis Today2008,136,:1
18Comparative study of the kinetics of methane steam reforming on supported Ni and Sn/Ni alloy catalysts:the impact of the formation of Ni alloy on chemistry显示文摘E Nikolla l Schwank S Linic 2009Journal of Catalysis2009,263,:1
19Water splitting on composite plasmonicmetal/semiconductor photoelectrodes:evidence for selective plasmon-induced formation of charge carriers near the semiconductor surface显示文摘Ingram D B Linic S 2011Journal of the American Chemical Society2011,133,14:1
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