P. Manivel, S. Ramakrishnan
A novel technique for the synthesis of thin-layered graphene sheets (GNS) has been developed through hydrogen-induced reduction of graphene oxide at a low temperature of 200°C using radio frequency chemical vapor deposition (RF-CVD). The structural and functional characteristics of the produced GNS were thoroughly characterized employing various techniques, including Fourier transform infrared spectroscopy, X-ray diffraction, scanning electron microscopy, Raman spectroscopy, and particle size analysis. The generated GNS exhibited an average diameter of 528.8 nm as confirmed by particle size analysis. Notably, this GNS production process is expeditious, demonstrating high efficiency in exfoliation, while being non-toxic and environmentally friendly, making it a prospective method for industrial-scale production applications. The study outlines the potential of utilizing RF-CVD in the scalable synthesis of graphene nanosheets, contributing to advancements in nanotechnology and materials science.
@article{89e642c9-c75c-4e5c-8e6b-dc36c58682e3,
title={Graphene nanosheets by low temperature t},
author={P. Manivel and S. Ramakrishnan},
year={2026},
language={en}
}TY - JOUR TI - Graphene nanosheets by low temperature t AU - P. Manivel AU - S. Ramakrishnan PY - 2026 LA - en ER -
Jia Zhang, PingAn Hu
This study investigates the synthesis of a large area, uniform graphene film on tilted copper foil within a chemical vapor deposition (CVD) system, ai
Nurul Nazli Rosli, Mohd Adib Ibrahim
Graphene has been recognised for its various excellent properties and its potential to be applied in various applications such as transparent conducti
Moon H. Kang, Guangyu Qiu
In this study we report on the electron transport in flexible-transparent polymer supported chemically doped chemical vapour deposited (CVD) graphene.
Bimal P. Singh, Sasmita Nayak
This study presents a simple solution-based approach for creating flexible, transparent, and conducting composite films utilizing graphene-polymer com
Mohammad Mahdi Tavakoli, Giovanni Azzellino
Large area graphene grown by chemical vapor deposition (CVD) has been the main focus of many researchers due to its vast areas of applications such as
S T ongay, K Berke
We report on the p doping of graphene with the polymer TFSA ((CF3 SO2 )2 NH). Modification of graphene with TFSA decreases the graphene sheet resistan