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March 9, 2011Physical Review Letters774 citationsOpen Access

From Point Defects in Graphene to Two-Dimensional Amorphous Carbon

JKJani KotakoskiAKArkady V. KrasheninnikovUKUte Kaiser

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Abstract

While crystalline two-dimensional materials have become an experimental reality during the past few years, an amorphous 2D material has not been reported before. Here, using electron irradiation we create an sp2-hybridized one-atom-thick flat carbon membrane with a random arrangement of polygons, including four-membered carbon rings. We show how the transformation occurs step by step by nucleation and growth of low-energy multivacancy structures constructed of rotated hexagons and other polygons. Our observations, along with first-principles calculations, provide new insights to the bonding behavior of carbon and dynamics of defects in graphene. The created domains possess a band gap, which may open new possibilities for engineering graphene-based electronic devices.

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Kotakoski et al. (2011) studied this question.

synapsesocial.com/papers/69ddc3b7bf539e227055830bhttps://doi.org/10.1103/physrevlett.106.105505
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