Abstract
Abstract
Three-dimensional (3D) graphene with a high specific surface area and excellent electrical conductivity holds extraordinary potential for molecular gas sensing. Gas molecules adsorbed onto graphene serve as electron donors, leading to an increase in conductivity. However, several challenges remain for 3D graphene-based gas sensors, such as slow response and long recovery time. Therefore, research interest remains in the promotion of the sensitivity of molecular gas detection. In this study, we fabricate oxygen plasma-treated 3D graphene for the high-performance gas sensing of formaldehyde. We synthesize large-area, high-quality, 3D graphene over Ni foam by chemical vapor deposition and obtain freestanding 3D graphene foam after Ni etching. We compare three types of strategies—non-treatment, oxygen plasma, and etching in HNO3 solution—for the posttreatment of 3D graphene. Eventually, the strategy for oxygen plasma-treated 3D graphene exceeds expectations, which may highlight the general gas sensing based on chemiresistors.
Funder
Taishan Scholar Project of Shandong Province
Chinesisch-Deutsche Zentrum für Wissenschaftsförderung
European Regional Development Fund
Project of “20 items of University” of Jinan
National Natural Science Foundation of China
Natural Science Foundation of Shandong Province, China
State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology
Key Research and Development Program of Shandong Province
Science and Technology Support Plan for Young People in Colleges and Universities of Shandong Province
Subject
Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering
Cited by
16 articles.
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