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Titlebook: Handbook of Functionalized Carbon Nanostructures; From Synthesis Metho Ahmed Barhoum,Kalim Deshmukh Living reference work 20230th edition

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Nanostructures and Fascinating Properties of Carbon Nanohorns,t limits the dispersion as well as separation of a big cluster shape into discrete nanosized cones and makes the functionalization difficult. We can compensate this limitation with a latest methodology of separating the “dahlia-like” clusters and transfigure into single nanocones. Hence, we have gre
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Graphene Edge Structures: Folding, Tubing, and Twisting,he graphene nanoribbon, an example of geometrically anisotropic graphene. Two different topological edge distortions, one parallel to the length of the strip and the other orthogonal to it, will be presented in an infinitely length graphene ribbon. While topological distortions, such as folding and
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Graphitic Carbon Nitride and Their Derivatives,ications. In addition, the various synthesis methods that exist for C.N., such as exfoliation, chemical vapor deposition, etc., are explained in detail. By taking into consideration the properties, we explain the different applications of C.N. in the field of rechargeable batteries, solar cells, hyd
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Electrochemical Synthesis of Carbon Nanostructures,terials such as nanofibers, nanorods, and nanotubes with the benefits of controlled process, low operating temperature, simplicity, and environmentally benign nature. In this chapter the synthesis of various carbon nanostructures, particularly the synthesis of carbon nanotubes (CNTs), nanofibers, an
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Radiation-Induced Synthesis of Carbon Nanostructures,iation-based techniques has a significant influence on tuning and optimizing the structural, morphological, and bonding characteristics, which have important roles in shaping the chemical, optical, electronic, thermal, and magnetic properties for an extensive range of applications. This chapter disc
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