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Multispecies-coadsorption-induced rapid preparation of graphene glass fiber fabric and applications in flexible pressure sensor.

Authors :
Wang, Kun
Sun, Xiucai
Cheng, Shuting
Cheng, Yi
Huang, Kewen
Liu, Ruojuan
Yuan, Hao
Li, Wenjuan
Liang, Fushun
Yang, Yuyao
Yang, Fan
Zheng, Kangyi
Liang, Zhiwei
Tu, Ce
Liu, Mengxiong
Ma, Mingyang
Ge, Yunsong
Jian, Muqiang
Yin, Wanjian
Qi, Yue
Source :
Nature Communications; 6/12/2024, Vol. 15 Issue 1, p1-10, 10p
Publication Year :
2024

Abstract

Direct chemical vapor deposition (CVD) growth of graphene on dielectric/insulating materials is a promising strategy for subsequent transfer-free applications of graphene. However, graphene growth on noncatalytic substrates is faced with thorny issues, especially the limited growth rate, which severely hinders mass production and practical applications. Herein, graphene glass fiber fabric (GGFF) is developed by graphene CVD growth on glass fiber fabric. Dichloromethane is applied as a carbon precursor to accelerate graphene growth, which has a low decomposition energy barrier, and more importantly, the produced high-electronegativity Cl radical can enhance adsorption of active carbon species by Cl–CH<subscript>2</subscript> coadsorption and facilitate H detachment from graphene edges. Consequently, the growth rate is increased by ~3 orders of magnitude and carbon utilization by ~960-fold, compared with conventional methane precursor. The advantageous hierarchical conductive configuration of lightweight, flexible GGFF makes it an ultrasensitive pressure sensor for human motion and physiological monitoring, such as pulse and vocal signals. To solve the difficult problems with CVD of graphene on non-metallic substrates, researchers used dichloromethane as a C precursor with a multispecies coadsorption mechanism for more efficient graphene coating on fiber fabrics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
177881108
Full Text :
https://doi.org/10.1038/s41467-024-48958-y