Elochukwu Stephen Agudosi, Ezzat Chan Abdullah
Graphene, a carbon nanomaterial, has gained immense research interest due to its remarkable properties such as high surface area, excellent electrical conductivity, ultra-thin nature, superior mechanical strength, and high electron mobility. This study aims to critically evaluate existing synthesis routes for graphene and graphene-based composites while exploring their applications in electrochemical energy storage systems. Various synthesis methods are discussed in terms of their efficiency and scalability to enhance the physicochemical properties of graphene. Despite the promising attributes of graphene for energy storage, it is observed that the experimental electrochemical performance still falls significantly short of the theoretical expectations. The findings suggest that while graphene exhibits great potential for application in energy storage devices, further optimization of synthesis techniques and composite formulations is necessary to bridge the gap between theoretical performance and practical outcomes. This review provides a comprehensive understanding of the advancements in graphene synthesis and highlights the challenges faced in its implementation in electrochemical energy storage applications.
@article{41c7b896-3328-4293-b0f3-a30128c29135,
title={A Review of the Graphene Synthesis Route},
author={Elochukwu Stephen Agudosi and Ezzat Chan Abdullah},
year={2026},
language={en}
}TY - JOUR TI - A Review of the Graphene Synthesis Route AU - Elochukwu Stephen Agudosi AU - Ezzat Chan Abdullah PY - 2026 LA - en ER -
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