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金刚石-石墨烯复合纳米结构

Diamond-Graphene Composite Nanostructures.

作者信息

Németh Péter, McColl Kit, Smith Rachael L, Murri Mara, Garvie Laurence A J, Alvaro Matteo, Pécz Béla, Jones Adrian P, Corà Furio, Salzmann Christoph G, McMillan Paul F

机构信息

Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Magyar tudósok körútja 2, 1117 Budapest, Hungary.

Department of Earth and Environmental Sciences, University of Pannonia, Egyetem út 10, 8200 Veszprém, Hungary.

出版信息

Nano Lett. 2020 May 13;20(5):3611-3619. doi: 10.1021/acs.nanolett.0c00556. Epub 2020 Apr 21.

Abstract

The search for new nanostructural topologies composed of elemental carbon is driven by technological opportunities as well as the need to understand the structure and evolution of carbon materials formed by planetary shock impact events and in laboratory syntheses. We describe two new families of diamond-graphene (diaphite) phases constructed from layered and bonded sp and sp nanostructural units and provide a framework for classifying the members of this new class of materials. The nanocomposite structures are identified within both natural impact diamonds and laboratory-shocked samples and possess diffraction features that have previously been assigned to lonsdaleite and postgraphite phases. The diaphite nanocomposites represent a new class of high-performance carbon materials that are predicted to combine the superhard qualities of diamond with high fracture toughness and ductility enabled by the graphitic units and the atomically defined interfaces between the sp- and sp-bonded nanodomains.

摘要

对由元素碳构成的新型纳米结构拓扑的探索,既受到技术机遇的推动,也源于理解行星撞击事件及实验室合成中形成的碳材料的结构和演化的需求。我们描述了由分层且键合的sp和sp纳米结构单元构建的两个新型金刚石 - 石墨烯(透辉碳)相家族,并为这类新型材料的成员分类提供了一个框架。在天然冲击金刚石和实验室冲击样品中均识别出了这种纳米复合结构,其具有先前被归为六方金刚石和后石墨相的衍射特征。透辉碳纳米复合材料代表了一类新型高性能碳材料,预计其将金刚石的超硬特性与由石墨单元以及sp键合和sp键合纳米域之间原子级定义的界面所赋予的高断裂韧性和延展性相结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b4c/7227005/48b4fd9c5057/nl0c00556_0001.jpg

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