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The structure of negatively curved spongy carbon

机译:负弯曲海绵状碳的结构

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摘要

This work reports on the production and characterization of a novel form of nanostructured carbon consisting of threedimensional, fully connected sp{sup}2 networks. This form of carbon is characterized by interconnected thin layers forming a spongy structure with meso- and macroporosity. The spongy carbon is produced by a pulsed microplasma cluster source in the presence of a metal-organic catalyst and it can be deposited as a film by supersonic cluster beam deposition (SCBD). Unlike fullerenes, nanotubes and graphite, which consist of zero-, one- or two-dimensional covalent objects held together by van der Waals' forces, this novel structure consists of a robust, multiply connected graphene sheet which is fully covalent in three dimensions. Theoretical analysis indicates that such carbon sponges apparently grow as minimal surfaces and have the long-sought topological structure of random schwarzites.
机译:这项工作报道了由三维,全连接的sp {sup} 2网络组成的新型纳米结构碳的生产和表征。这种形式的碳的特征是相互连接的薄层形成具有中孔和大孔的海绵状结构。海绵状碳是在金属-有机催化剂存在下由脉冲等离子簇源产生的,可以通过超声簇束沉积(SCBD)沉积成膜。与富勒烯,纳米管和石墨不同,富勒烯,纳米管和石墨由零范,一维或二维共价物体组成,它们通过范德华力保持在一起,而这种新颖的结构则由坚固,多重连接的石墨烯片组成,该石墨烯片在三个维度上都是完全共价的。理论分析表明,这种碳海绵显然以最小的表面生长,并且具有无规的长晶石长期寻求的拓扑结构。

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