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Titlebook: Handbook of Functionalized Carbon Nanostructures; From Synthesis Metho Ahmed Barhoum,Kalim Deshmukh Reference work 2024 Springer Nature Swi

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Size-Dependent Properties of Graphene Quantum Dotsoxicity, tunable fluorescence, and low biocompatibility, making them capable material for various novel applications. GQDs can be developed via two major strategies: “top-down” strategy and “bottom-up” strategy. These strategies further include different synthesis methods which include hydrothermal
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Development of Fullerenes and Their Derivativess have a cage-like structure that has opened up a wide range of potential applications in various fields, including molecular electronics, biomedicine, and nanotechnology. In this book chapter, we will delve into the various physical and electronic properties of fullerenes and their derivatives, alo
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Geometric and Electronic Properties of Graphene Nanoribbonsof graphene that come in different widths and edge geometries, leading to unique electrical band structures. The electrical characteristics of GNRs are determined by their width; thinner ribbons exhibit semiconductor behavior, while broader ones exhibit metallic behavior. Moreover, the specific conf
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Hierarchical Porous Hollow Carbon Nanofibersroved electrical conductivity, and physicochemical stability, porous carbon nanomaterials have significantly advanced energy storage-related applications in other fields like tissue engineering and environmental remediation. Hierarchical porous carbon has excellent electrochemical properties and has
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Nanostructures and Fascinating Properties of Carbon Nanohornss a conical carbon nanostructure consisting of SP. bonded carbon atoms. The diameter persists in the range of 2–5 nm. In the synthesis of carbon nanohorns, there is no requirement of metal catalysts, and the production takes place in bulk quantities, and the temperature should be normal, i.e., room
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Hollow and Dense (Non-hollow) Carbon Nanospheresctivity and good chemical and mechanical stability. Hollow carbon nanomaterials (HCNs), which have extremely high specific surface areas, high surface-to-volume ratios, and controllable pore size distribution, will be used to benefit energy storage systems by supplying a lot of active sites, filling
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Graphitic Carbon Nitride and Their Derivativesns. Among these, carbon nitride (C.N.) is a two-dimensional material with prominent physical, chemical, and electronic properties. It is a polymeric material that holds carbon and nitrogen with superior hardness, wear resistance, electronic and catalytic features, etc. A detailed study regarding the
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