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March 30, 2009Nano Letters359 citationsOpen Access

Electrical Conduction Mechanism in Chemically Derived Graphene Monolayers

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AKA. B. KaiserCGCristina Gómez‐NavarroRSRavi S. Sundaram

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Abstract

We have performed a detailed study of the intrinsic electrical conduction process in individual monolayers of chemically reduced graphene oxide down to a temperature of 2 K. The observed conductance can be consistently interpreted in the framework of two-dimensional variable-range hopping in parallel with electric-field-driven tunneling. The latter mechanism is found to dominate the electrical transport at very low temperatures and high electric fields. Our results are consistent with a model of highly conducting graphene regions interspersed with disordered regions, across which charge carrier hopping and tunneling are promoted by strong local electric fields.

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Cite This Study

Kaiser et al. (2009) studied this question.

synapsesocial.com/papers/69daa7a9615cc0c8eaa3c73chttps://doi.org/10.1021/nl803698b
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