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Room-temperature chemical synthesis of C2

机译:C2室温化学合成

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摘要

Diatomic carbon (C 2 ) is historically an elusive chemical species. It has long been believed that the generation of C 2 requires extremely high physical energy, such as an electric carbon arc or multiple photon excitation, and so it has been the general consensus that the inherent nature of C 2 in the ground state is experimentally inaccessible. Here, we present the chemical synthesis of C 2 from a hypervalent alkynyl-λ 3 -iodane in a flask at room temperature or below, providing experimental evidence to support theoretical predictions that C 2 has a singlet biradical character with a quadruple bond, thus settling a long-standing controversy between experimental and theoretical chemists, and that C 2 serves as a molecular element in the bottom-up chemical synthesis of nanocarbons such as graphite, carbon nanotubes, and C 60 .
机译:硅藻碳(C 2)在历史上是一种难以捉摸的化学物质。已经据信C 2的产生需要极高的物理能量,例如电碳弧或多重光子励磁,因此一般的共识是,地面状态中的C 2的固有性质是通过实验无法进入的。这里,我们将C 2的化学合成在室温或低于烧瓶中的烧瓶中的C 2的化学合成,提供实验证据,以支持C 2具有四倍键的单次型突变物质的理论上的证据,从而稳定实验和理论化学家之间的长期争议,并且C 2用作纳米碳的自下而上的化学合成中的分子元素,例如石墨,碳纳米管和C 60。

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