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用于结构明确的开壳石墨烯片段的合成有机自旋化学。

Synthetic organic spin chemistry for structurally well-defined open-shell graphene fragments.

机构信息

Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.

出版信息

Nat Chem. 2011 Mar;3(3):197-204. doi: 10.1038/nchem.985.

Abstract

Graphene, a two-dimensional layer of sp(2)-hybridized carbon atoms, can be viewed as a sheet of benzene rings fused together. Three benzene rings can be combined in three different ways, to yield linear anthracene and angular phenanthrene, where the rings share two C-C bonds, and the phenalenyl structure where three C-C bonds are shared between the rings. This third structure contains an uneven number of carbon atoms and, hence, in its neutral state, an uneven number of electrons--that is, it is a radical. All three structures may be viewed as being sections of graphene. Extension of this concept leads to an entire family of phenalenyl derivatives--'open-shell graphene fragments'--that are of substantial interest from the standpoint of fundamental science as well as in view of their potential applications in materials chemistry, in particular quantum electronic devices. Here we discuss current trends and challenges in this field.

摘要

石墨烯是一种由 sp(2)杂化碳原子组成的二维层状结构,可以看作是由苯环融合在一起形成的薄片。三个苯环可以以三种不同的方式结合,生成线性蒽和角型菲,其中苯环共享两个 C-C 键,而苯并菲结构则在苯环之间共享三个 C-C 键。第三个结构含有奇数个碳原子,因此在其中性状态下,含有奇数个电子,即自由基。所有这三种结构都可以看作是石墨烯的一部分。这一概念的延伸导致了整个苯并菲衍生物家族的出现,即“开壳石墨烯片段”,从基础科学的角度以及从它们在材料化学中的潜在应用,特别是量子电子器件方面的应用来看,这些片段都具有重要的意义。本文讨论了该领域的当前趋势和挑战。

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