Application of Graphene Composites in Flexible Electrons
DOI:
https://doi.org/10.61173/anpbdq03Keywords:
Graphene flexible, electronics, composite materialAbstract
With the development of science and technology, graphene materials have come into the public view, especially in flexible electronics and play a key role, which has attracted the public’s attention. Because of its good electrical conductivity, high light transmittance and good flexibility, it has a high application value in the research and development of supercapacitors and epidermal electronics.This paper summarizes the structure and properties of graphene, discusses the application of graphene in supercapacitors and other aspects, describes the research progress and direction of graphene composite in flexible electrons in recent years, and the future development and prediction of graphene composite in flexible electrons. It is found that graphene has significant technical advantages and broad application prospects in the field of flexible electronics. The future prospects of graphene are still broad, and the joint efforts of scientific research and industry are expected to promote the further development and wide application of graphene technology.References
[1] Xu Jianxin.Preparation and application of patterned flexible supercapacitors[D].Northeastern Electric Power University,2024.
[2] HONG J Y, KIM W, CHOI D, et al. Omnidirectionally Stretchable and Transparent Graphene Electrodes ACS Nano, 2016, 10(10): 9446-9455.
[3] LEE H, HONG S, LEE J, et al. Highly Stretchable and Transparent Supercapacitor by Ag-Au Core-Shell Nanowire Network with High Electrochemical Stability. ACS Appl Mater Interfaces, 2016, 8(24): 15449-15458.
[4] Cheng Yan, Wang R. A tenchable and highly sensitive graphene-based fiber, For the sensing of tensile strain, bending, and torsion. advanced material.December 2,2015;27(45):7365- 71.
[5] Liu. M, Pu. X, Jiang. C. Y, Liu.T. X. Graphene-based triboelectric nanogenerator for self-powered wearable electronics, Adv. Mater. 2017, 29, 1703700.
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