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Effect of Covalent Chemistry on the Electronic Structure and Properties of the Carbon Allotropes

机译:共价化学对碳异滴电型电子结构及性质的影响

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We discuss advances in the covalent modification of the carbon allotropes, in particular graphene and carbon nanotubes. The main focus is on the organometallic chemistry that affords the possibility to electronically interconnect graphitic surfaces by means of covalent bonding. This mode of functionalization allows the formation of atomic scale interconnects that consist of bis-hexahapto-metal-bonds between benzenoid ring systems, which increases the dimensionality of the electronic structure of the materials leading to enhanced conductivity. The bis-hexahapto bond formation in single walled carbon nanotubes (SWNTs), graphite nanoplatelets and graphene, can be readily accomplished by metal vapor synthesis (e-beam evaporation), solution and photochemical routes.
机译:我们讨论了碳异滴,特别是石墨烯和碳纳米管的共价修饰的进展。主要焦点是有机金属化学,可以通过共价键合来以电子方式互连石墨表面。这种官能化模式允许形成由苯内环系统之间的双六拉金属 - 金属键组成的原子刻度互连,这增加了材料的电子结构的维度,这导致导电性增强。单壁碳纳米管(SWNT),石墨纳米型和石墨烯中的双六Hapo键形成可以通过金属蒸汽合成(E-束蒸发),溶液和光化学途径容易地完成。

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