Title : Molecular adsorption induces the transformation of rhombohedral- to Bernal-stacking order in trilayer graphene.

Pub. Date : 2013

PMID : 23797687






4 Functional Relationships(s)
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1 The Bernal (ABA)-stacked graphene trilayer is presumed to be thermodynamically more stable than the rhombohedral (ABC) counterpart. Graphite ATP binding cassette subfamily B member 6 (Langereis blood group) Homo sapiens
2 However, the thermal transformation from ABC to ABA domains does not occur at a temperature lower than 1,000 C. Here we report that ABC-stacked trilayers are transformed to ABA-stacked layers after an organic molecule triazine is evaporated onto graphene surfaces at 150 C. The transformation is found to always initiate at the ABA-ABC domain boundaries. Graphite ATP binding cassette subfamily B member 6 (Langereis blood group) Homo sapiens
3 However, the thermal transformation from ABC to ABA domains does not occur at a temperature lower than 1,000 C. Here we report that ABC-stacked trilayers are transformed to ABA-stacked layers after an organic molecule triazine is evaporated onto graphene surfaces at 150 C. The transformation is found to always initiate at the ABA-ABC domain boundaries. Graphite ATP binding cassette subfamily B member 6 (Langereis blood group) Homo sapiens
4 However, the thermal transformation from ABC to ABA domains does not occur at a temperature lower than 1,000 C. Here we report that ABC-stacked trilayers are transformed to ABA-stacked layers after an organic molecule triazine is evaporated onto graphene surfaces at 150 C. The transformation is found to always initiate at the ABA-ABC domain boundaries. Graphite ATP binding cassette subfamily B member 6 (Langereis blood group) Homo sapiens