Room-temperature chemical synthesis of C<sub>2</sub>.

Miyamoto, Kazunori; Narita, Shodai; Masumoto, Yui; Hashishin, Takahiro; Osawa, Taisei; Kimura, Mutsumi; Ochiai, Masahito; Uchiyama, Masanobu · Nat Commun · 2020

basic_science · Level V

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Abstract

Diatomic carbon (C<sub>2</sub>) is historically an elusive chemical species. It has long been believed that the generation of C<sub>2</sub> 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<sub>2</sub> in the ground state is experimentally inaccessible. Here, we present the chemical synthesis of C<sub>2</sub> from a hypervalent alkynyl-λ<sup>3</sup>-iodane in a flask at room temperature or below, providing experimental evidence to support theoretical predictions that C<sub>2</sub> has a singlet biradical character with a quadruple bond, thus settling a long-standing controversy between experimental and theoretical chemists, and that C<sub>2</sub> serves as a molecular element in the bottom-up chemical synthesis of nanocarbons such as graphite, carbon nanotubes, and C<sub>60</sub>.