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- W2241063668 abstract "Carbon is a truly unique chemical element. It can form a broad variety of architectures in all dimensions, both at the macroscopic and nanoscopic scales. During the last 20+ years, brave new forms of carbon have been unveiled. The family of carbon-based materials now extends from C 60 to carbon nanotubes, and from old diamond and graphite to graphene. The properties of the new members of this carbon family are so impressive that they may even redefine our era. This chapter provides a brief overview of these carbon structures. Carbon structures and hybridizations Carbon is one of the most versatile elements in the periodic table in terms of the number of compounds it may create, mainly due to the types of bonds it may form (single, double, and triple bonds) and the number of different atoms it can join in bonding. When we look at its ground state (lowest energy) electronic configuration, 1s 2 2s 2 2p 2 , carbon is found to possess two core electrons (1 s ) that are not available for chemical bonding and four valence electrons (2 s and 2 p ) that can participate in bond formation (Fig. 1.1(a)). Since two unpaired 2 p electrons are present, carbon should normally form only two bonds from its ground state. However, carbon should maximize the number of bonds formed, since chemical bond formation will induce a decrease of the system energy. Consequently, carbon will re-arrange the configuration of these valence electrons." @default.
- W2241063668 created "2016-06-24" @default.
- W2241063668 creator A5008433484 @default.
- W2241063668 creator A5026938747 @default.
- W2241063668 creator A5051916954 @default.
- W2241063668 date "2014-02-12" @default.
- W2241063668 modified "2023-10-03" @default.
- W2241063668 title "Introduction to carbon-based nanostructures" @default.
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