Graphene-like nanoribbons periodically embedded with four- and eight-membered rings

نویسندگان

  • Meizhuang Liu
  • Mengxi Liu
  • Limin She
  • Zeqi Zha
  • Jinliang Pan
  • Shichao Li
  • Tao Li
  • Yangyong He
  • Zeying Cai
  • Jiaobing Wang
  • Yue Zheng
  • Xiaohui Qiu
  • Dingyong Zhong
چکیده

Embedding non-hexagonal rings into sp2-hybridized carbon networks is considered a promising strategy to enrich the family of low-dimensional graphenic structures. However, non-hexagonal rings are energetically unstable compared to the hexagonal counterparts, making it challenging to embed non-hexagonal rings into carbon-based nanostructures in a controllable manner. Here, we report an on-surface synthesis of graphene-like nanoribbons with periodically embedded four- and eight-membered rings. The scanning tunnelling microscopy and atomic force microscopy study revealed that four- and eight-membered rings are formed between adjacent perylene backbones with a planar configuration. The non-hexagonal rings as a topological modification markedly change the electronic properties of the nanoribbons. The highest occupied and lowest unoccupied ribbon states are mainly distributed around the eight- and four-membered rings, respectively. The realization of graphene-like nanoribbons comprising non-hexagonal rings demonstrates a controllable route to fabricate non-hexagonal rings in nanoribbons and makes it possible to unveil their unique properties induced by non-hexagonal rings.

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عنوان ژورنال:

دوره 8  شماره 

صفحات  -

تاریخ انتشار 2017