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Titlebook: IT Convergence and Security 2017; Volume 1 Kuinam J. Kim,Hyuncheol Kim,Nakhoon Baek Conference proceedings 2018 Springer Nature Singapore P

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cent discoveries of different sorts of these structures have sparked research into the use of carbon nanostructures in several domains. They could be useful in the domains of genetics, medicine, and drug delivery. Currently, a variety of methods, including functionalization, filling, doping, and che
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Guangyuan Wang,Yongji Ren,Xiaofeng Xu,Xiaolei Liu high specific surface area, and excellent electrical conductivity. Graphene, carbon nanotubes, and mesoporous carbon are commonly used in the preparation of electrocatalysts, which are good composite matrix materials. Load different active species on the carbon nanomaterial to increase the electron
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Shinyoung Ahn,Eunji Lim,Wan Choi,Sungwon Kang,Hyuncheol Kimresearch hotspots owing to their distinct optical, electrical,structural and chemical properties. With the advancement in the material synthesis route, they can be functionalized and used in various environmental applications. Many CBNMs could be derived from renewable sources, providing viable and
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Weiguo Wan,Hyo Jong Leemation at the molecular level. Visualization of DNA sequences by use of nanopores, so-named nanopore sequencing, is one of the most promising and revolutionary DNA sequencing technologies. In comparison to nanopores formed from solid-state membranes (e.g., silicon oxide, aluminum oxide, polymer memb
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Chanjin Park,Wonhyuk Lee,Hyuncheol Kimcies, and involves the heating of a fibre preform in a gaseous environment so that the matrix is deposited from the gas phase. The technology developed to date allows fine control over the composition and morphology of the solid deposit. Various processes have been used for the production of thin fi
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