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Titlebook: Carbon for Sensing Devices; Danilo Demarchi,Alberto Tagliaferro Book 2015 Springer International Publishing Switzerland 2015 Carbon Materi

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Dispersion of Carbon-Based Materials (CNTs, Graphene) in Polymer Matrices ideal materials for preparing “metal-free” conductive polymer composites or for reinforcing materials with potential applications in aerospace and automotive sectors, where lightweight and robust materials are needed.
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https://doi.org/10.1007/978-3-319-77498-5zations of the carbon atom are so close that different configurations can exist in normal earth environments, bringing about life. The various hybridizations have an impact on the structure and properties of inorganic carbon based materials too. In this chapter we will review this last subject looki
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Strong Interactions and Correlations,ages. Conventional carbon materials include graphite blocks, the family of carbon blacks, activated carbons and diamond. Among the newly developed materials two types can be distinguished: nanotextured carbons and nanosized carbons. Nanotextured carbons comprise a wide range of carbon structures fro
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Michael J. McCaughey,Mark J. Kushnerelectrical, thermal and optical) together with low weight, easy processing..Among the main carbon-based fillers, carbon nanotubes (CNTs), expanded graphite (EG), graphite nanoplateles (GNPs), graphene oxide (GO) and graphene (GR) attracted considerable attention in a great variety of applications su
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Time-Dependent Ginzburg-Landau Equations,d of issues. Many of these biotechnological devices need to interact with the human body indefinitely, and it has therefore become a priority that these devices interact with the body with an increased level of biocompatibility. Biocompatibility is a complex concept which has been redefined many tim
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