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12篇 您的检索式:作者名="Devasenathipathy"
    题名 作者 年代 出处 被引量
1Particle imaging techniques for mierofabricated fluidic systems 显示文摘DEVASENATHIPATHY S SANTIAGO J G WERELEY S T 2003Experim in Fluids2003,34,:1
2Particle imaging techniques for microfabricated fluidic systems显示文摘Devasenathipathy S Santiago J G Wereley S T 2003Experiments in Fluids2003,34,4:1
3MR evaluation of biliary-enteric anastomotic stricture: Does contrast-enhanced T1W MRC provide additional information?显示文摘Devasenathipathy Kandasamy Raju Sharma Ashu Seith Bhalla Shivanand R. Gamanagatti Deep N. Srivastava Peush Sahni Rakesh Kumar 2011Clinics and Research in Hepatology and Gastroenterology2011,,8:1
4Particle imaging techniques for microfabricated fluidic systems显示文摘Devasenathipathy S Santiago J G Wereley S T 2003Experiments in Fluids2003,34,4:1
5Particle imaging techniques for microfabricated fluidic systems显示文摘Devasenathipathy S Santiago J G Wereley S T 2003Experiments in Fluids2003,34,:1
6Synthesis and charac- terization of graphene~cobalt phthalocyanines and graphene-iron phthalocyanine composites and their enzymatic fuel cell application 显示文摘Mani V Devasenathipathy R Chen S M 2015Renewable Energy2015,74,:1
7Particle tracking techniques for electrokinetic microchannel flows显示文摘 Santiago J G Takehara Kohsei 2002Anal Chem2002,74,15:1
8Synthesis and characterization of graphene-cobalt phthalocyanines and graphene-ironphthalocyanine composites and their enzymatic fuel cell application显示文摘Mani V Devasenathipathy R Chen S M 2015Renewable Energy2015,74,:1
9Synthesis and characterization of graphene-cobalt phthalocyanines and graphene-iron phthalocyanine composites and their enzymatic fuel cell application显示文摘Mani V Devasenathipathy R Chen S M 2015Renewable Energy2015,,74:1
10A Retrospective Analysis of 334 Cases of Hemoptysis Treated by Bronchial Artery Embolization 显示文摘Ashu Bhalla Devasenathipathy Kandasamy Prasad Veedu Oman Med J0,30,2:1
11Particle tracking techniques for electrokinetic microchannel flows 显示文摘DEVASENATHIPATHY S SANTIAGO J G TAKE-HARA K 2002Analytical Chemistry2002,74,:1
12Direct observation of the plasmon-enhanced palladium catalysis with single-molecule fluorescence microscopy显示文摘Plasmonic nanostructures have been proved effective not only in catalyzing chemical reactions,but also in improving the activity of non-plasmonic photocatalysts.It is essential to reveal the synergy between the plasmonic structure and the non-plasmonic metal photocatalyst for expounding the underlying mechanism of plasmon-enhanced catalysis.Herein,the enhancement of resazurin reduction at the heterostructure of silver nanowire(AgNW)and palladium nanoparticles(PdNPs)is observed in situ by single-molecule fluorescence microscopy.The catalysis mapping results around single AgNW suggest that the catalytic activity of PdNPs is enhanced for~20 times due to the excitation of localized surface plasmon resonance(LSPR)in the vicinity of the AgNW.This catalysis enhancement is also highly related to the wavelength and polarization of the excitation light.In addition,the palladium catalysis is further enhanced by~10 times in the vicinity of a roughened AgNW or a AgNW-AgNW nanogap because of the improvement of catalytic hotspots.These findings clarify the contribution of plasmon excitation in palladium catalysis at microscopic scale,which will help to deepen the understanding of the plasmon-enhanced photocatalysis and provide a guideline for developing highly efficient plasmon-based photocatalysts.Zhuoyao Li Rajkumar Devasenathipathy Junjie Wang Liuyingzi Yu Yan Liang Huixiang Sheng Yameng Zhu Hai Li Hiroshi Uji-i Xiao Huang Gang Lu 2023Nano Research2023,16,7:0
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