Vinod Ganesan, Pei-Song Chee
Transparent conductive electronics have garnered significant attention due to their unique optoelectronic properties. This study aims to address the limitations of traditional transparent conductive films, such as indium tin oxide (ITO) and fluorine tin oxide (FTO), which exhibit poor mechanical flexibility and inconsistent transmittance in the UV-Vis spectrum. A hybrid transparent graphene film was fabricated using a conductive polymer-based spin coating approach. The goal of this method is to enhance the conductivity of the solution-processed graphene dispersion while maintaining the film's transparency. Polyvinyl alcohol (PVA) was introduced into the solution-processed graphene dispersion to serve as a binder, thereby improving the uniformity of the fabricated film and preventing the agglomeration of graphene sheets. The resulting hybrid coating of graphene/PEDOT: PSS achieved a resistance value of 4.93 kΩ with a transmittance of 75.39%. This hybrid material has potential applications in smart gas sensing technologies, specifically for monitoring food quality.
@article{60e68f58-1ea2-49d2-b83f-ca4966cab37c,
title={Development of a Hybrid Transparent Grap},
author={Vinod Ganesan and Pei-Song Chee},
year={2026},
language={en}
}TY - JOUR TI - Development of a Hybrid Transparent Grap AU - Vinod Ganesan AU - Pei-Song Chee PY - 2026 LA - en ER -
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