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Electrochemical Integration of Graphene with Light-Absorbing Copper-Based Thin Films

Padmanabhan, Medini and Roy, Kallol and Ramalingam, Gopalakrishnan and Raghavan, Srinivasan and Ghosh, Arindam (2012) Electrochemical Integration of Graphene with Light-Absorbing Copper-Based Thin Films. In: The Journal of Physical Chemistry C, 116 (1). pp. 1200-1204.

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Official URL: http://pubs.acs.org/doi/abs/10.1021/jp208120u

Abstract

We present an electrochemical route for the integration of graphene with light-sensitive copper-based alloys used in optoelectronic applications. Graphene grown using chemical vapor deposition (CVD) transferred to glass is found to be a robust substrate on which photoconductive CuxS films of 1-2 mu m thickness can be deposited. The effect of growth parameters on the morphology and photoconductivity of CuxS films is presented. Current-voltage (I-V) characterization and photoconductivity decay experiments are performed with graphene as one contact and silver epoxy as the other.

Item Type: Journal Article
Additional Information: Copyright of this article belongs to American Chemical Society.
Department/Centre: Division of Chemical Sciences > Materials Research Centre
Division of Physical & Mathematical Sciences > Physics
Date Deposited: 27 Feb 2012 11:44
Last Modified: 27 Feb 2012 11:44
URI: http://eprints.iisc.ernet.in/id/eprint/43675

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