Bimal P. Singh, Sasmita Nayak
This study presents a simple solution-based approach for creating flexible, transparent, and conducting composite films utilizing graphene-polymer composites, specifically with poly(N-hydroxymethyl) acrylamide as the host. The approach involves the in situ polymerization of graphene oxide (GO) within a polymer matrix, varying the GO concentration from 0 to 0.08 wt%. Various characterization techniques such as Field Emission Scanning Electron Microscopy (FESEM), Atomic Force Microscopy (AFM), Raman spectroscopy, UV–visible spectroscopy, and electrical measurement have been employed to analyze the composite films. The results reveal impressive electrical conductivity reaching up to 10^25 S m⁻¹ and a transmittance of 90% at a wavelength of 550 nm, making these films suitable for diverse applications that require transparent conductive materials. In conclusion, the flexible, stable, and customizable nature of these graphene-based composite films offers significant potential for the development of next-generation electronic and optoelectronic devices.
@article{579e92b8-326c-45cd-96f0-7fd3ffeec03f,
title={Transparent, Flexible, and Conducting Films Based on Graphene–Polymer Composites},
author={Bimal P. Singh and Sasmita Nayak},
year={2016},
language={en}
}TY - JOUR TI - Transparent, Flexible, and Conducting Films Based on Graphene–Polymer Composites AU - Bimal P. Singh AU - Sasmita Nayak PY - 2016 LA - en ER -
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