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用于室温下高性能检测NH和NO的3D化学功能化石墨烯水凝胶的绿色合成

Green Synthesis of 3D Chemically Functionalized Graphene Hydrogel for High-Performance NH and NO Detection at Room Temperature.

作者信息

Wu Jin, Wei Yaoming, Ding Haojun, Wu Zixuan, Yang Xing, Li Zhenyi, Huang Wenxi, Xie Xi, Tao Kai, Wang Xiaotian

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies and the Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou 510275, China.

The Ministry of Education Key Laboratory of Micro and Nano Systems for Aerospace, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

ACS Appl Mater Interfaces. 2020 May 6;12(18):20623-20632. doi: 10.1021/acsami.0c00578. Epub 2020 Apr 24.

Abstract

To address the low gas sensitivity of pristine graphene (Gr), chemical modification of Gr has been proved as a promising route. However, the existing chemical functionalization method imposes the utilization of toxic chemicals, increasing the safety risk. Herein, vitamin C (VC)-modified reduced graphene hydrogel (V-RGOH) is synthesized via a green and facile self-assembly process with the assistance of biocompatible VC molecules for high-performance NH and NO detection. The three-dimensional (3D) structured V-RGOH is highly sensitive to low-concentration NH and NO at room temperature. In comparison with those of the unmodified RGOH, the V-RGOH gas sensors display an order of magnitude higher sensitivity and much lower limit of detection, resulting from the enhanced interaction between VC and analytes. NH and NO with extremely low concentrations of 500 and 100 ppb are detected experimentally. Notably, imbedded microheaters are exploited to explore the temperature-dependent gas sensing properties, revealing the negative and positive impacts of temperature on the sensitivity and recovery speed, respectively. Notably, the V-RGOH sensor exhibits remarkable selectivity and linearity and a wide detection range. This work reveals the remarkable effects of chemical modification with biodegradable molecules and 3D structure design on improving the gas sensing performance of the Gr material.

摘要

为了解决原始石墨烯(Gr)气敏性低的问题,对Gr进行化学改性已被证明是一条很有前景的途径。然而,现有的化学功能化方法需要使用有毒化学品,增加了安全风险。在此,通过绿色简便的自组装过程,在生物相容性维生素C(VC)分子的辅助下合成了维生素C(VC)改性的还原石墨烯水凝胶(V-RGOH),用于高性能的NH和NO检测。三维(3D)结构的V-RGOH在室温下对低浓度的NH和NO具有高度敏感性。与未改性的RGOH相比,V-RGOH气体传感器的灵敏度提高了一个数量级,检测限大大降低,这是由于VC与分析物之间的相互作用增强所致。实验检测到极低浓度为500和100 ppb的NH和NO。值得注意的是,利用嵌入式微加热器来探索温度依赖性气敏特性,分别揭示了温度对灵敏度和恢复速度的负面影响和正面影响。值得注意的是,V-RGOH传感器具有显著的选择性和线性以及宽检测范围。这项工作揭示了用可生物降解分子进行化学改性和3D结构设计对提高Gr材料气敏性能的显著效果。

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