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在石墨中催化亚表面刻蚀纳米通道。

Catalytic subsurface etching of nanoscale channels in graphite.

机构信息

Karlsruhe Institute of Technology, Institute of Nanotechnology, D-76021 Karlsruhe, Germany.

出版信息

Nat Commun. 2013;4:1379. doi: 10.1038/ncomms2399.

Abstract

Catalytic hydrogenation of graphite has recently attracted renewed attention as a route for nanopatterning of graphene and to produce graphene nanoribbons. These reports show that metallic nanoparticles etch the surface layers of graphite or graphene anisotropically along the crystallographic zig-zag ‹11-20› or armchair ‹10-10› directions. The etching direction can be influenced by external magnetic fields or the supporting substrate. Here we report the subsurface etching of highly oriented pyrolytic graphite by Ni nanoparticles, to form a network of tunnels, as seen by scanning electron microscopy and scanning tunnelling microscopy. In this new nanoporous form of graphite, the top layers bend inward on top of the tunnels, whereas their local density of states remains fundamentally unchanged. Engineered nanoporous tunnel networks in graphite allow for further chemical modification and may find applications in various fields and in fundamental science research.

摘要

最近,作为一种对石墨烯进行纳米图案化并生产石墨烯纳米带的途径,石墨的催化氢化重新引起了人们的关注。这些报道表明,金属纳米颗粒沿晶面的锯齿形〈11-20〉或扶手椅形〈10-10〉方向各向异性地刻蚀石墨或石墨烯的表面层。刻蚀方向可以受到外部磁场或支撑衬底的影响。在这里,我们报告了 Ni 纳米颗粒对高取向热解石墨的亚表面刻蚀,形成了扫描电子显微镜和扫描隧道显微镜下可见的隧道网络。在这种新的纳米多孔石墨形式中,顶层在隧道顶部向内弯曲,而其局部态密度基本保持不变。在石墨中设计的纳米多孔隧道网络可以进行进一步的化学修饰,并可能在各个领域和基础科学研究中找到应用。

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