石墨烯
纳米孔
纳米孔
材料科学
纳米技术
石墨烯纳米带
半导体
纳米尺度
带隙
纳米
光电子学
复合材料
作者
César Moreno,Manuel Vilas‐Varela,Bernhard Kretz,Aran García-Lekue,Marius V. Costache,Markos Paradinas,Mirco Panighel,G. Ceballos,Sergio O. Valenzuela,Diego Peña,Aitor Mugarza
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2018-04-12
卷期号:360 (6385): 199-203
被引量:317
标识
DOI:10.1126/science.aar2009
摘要
Nanosize pores can turn semimetallic graphene into a semiconductor and from being impermeable into the most efficient molecular sieve membrane. However, scaling the pores down to the nanometer, while fulfilling the tight structural constraints imposed by applications, represents an enormous challenge for present top-down strategies. Here we report a bottom-up method to synthesize nanoporous graphene comprising an ordered array of pores separated by ribbons, which can be tuned down to the one nanometer range. The size, density, morphology and chemical composition of the pores are defined with atomic precision by the design of the molecular precursors. Our measurements further reveal a highly anisotropic electronic structure, where orthogonal one-dimensional electronic bands with an energy gap of ~1 eV coexist with confined pore states, making the nanoporous graphene a highly versatile semiconductor for simultaneous sieving and electrical sensing of molecular species.
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