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Rationally engineered 3D-dendritic cell-like morphologies of LDH nanostructures using graphene-based core-shell structures

查看全文 作  者:Karthik Kiran [1]Sarigamala;Shobha [2]Shukla;Alexander [3]Struck;Sumit [2]Saxena 高影响力作者 机构地区:[1]Centre for Research in Nanotechnology and Science,Indian Institute of Technology Bombay,Mumbai,MH 400076,India;[2]Nanostructures Engineering and Modeling Laboratory,Department of Metallurgical Engineering and Materials Science,Indian Institute of Technology Bombay,Mumbai,MH 400076,India;[3]Faculty of Technology and Bionics,Rhein-Waal University of Applied Sciences,47533 Kleve,Germany高影响力机构 出  处:《Microsystems & Nanoengineering》索引2019年第5卷第1期,共9页高影响力期刊 摘  要:Functionalization of graphene-based materials using chemical moieties not only modify the electronic structure of the underlying graphene but also enable in limited enhancement of targeted properties.Surface modification of graphene-based materials using other nanostructures enhances the effective properties by minimally modifying the properties of pristine graphene backbone.In this pursuit,we have synthesized bio-inspired hierarchical nanostructures based on Ni–Co layered double hydroxide on reduced graphene oxide core–shells using template based wet chemical approach.The material synthesized have been characterized structurally and electrochemically.The fabricated dendritic morphology of the composite delivers a high specific capacity of 1056 Cg^(−1).A cost effective solid state hybrid supercapacitor device was also fabricated using the synthesized electrode material which shows excellent performance with high energy density and fast charging capability. 关 键 词:BACKBONE TEMPLATE SHELLS
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