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还原温度对氧化石墨烯结构及室温下H2 敏感性能的影响

陈浩 彭同江 刘波 孙红娟 雷德会

物理学报2017,Vol.66Issue(8):26-35,10.
物理学报2017,Vol.66Issue(8):26-35,10.DOI:10.7498/aps.66.080701

还原温度对氧化石墨烯结构及室温下H2 敏感性能的影响

Effect of reduction temp erature on structure and hydrogen sensitivity of graphene oxides at ro om temp erature

陈浩 1彭同江 2刘波 2孙红娟 3雷德会2

作者信息

  • 1. 西南科技大学理学院, 绵阳 621010
  • 2. 西南科技大学矿物材料及应用研究所, 绵阳 621010
  • 3. 西南科技大学分析测试中心,绵阳 621010
  • 折叠

摘要

Abstract

As precursors exfoliated from graphite oxide gels, graphene oxide thin films are annealed in a temperature range of 100 ?C to 350 ?C to obtain a series of reduced graphene oxide samples with different reduction degrees. For the gas sensing experiments, the reduced graphene oxide thin film gas sensing element is prepared by spin coating with Ag-Pd integrated electronic device (Ag-Pd IED). The functional groups, structures, and gas sensing performance of all the samples are investigated by X-ray diffraction, Raman spectroscopy, Fourier transform infrared spectroscopy, and gas sensing measurement. The results show that the structure of the graphene oxide samples are transformed to the graphitic structure after reduction at different thermal treatment temperatures. When the reduction temperature is lower than 150 ?C, materials exhibit features of graphite oxide. When the reduction temperature reaches about 200 ?C, the samples show characteristics transformed from graphite oxide to reduced graphite oxide gradually. When the temperature is higher than 250 ?C, materials show features of reduced graphite oxide. During the reduction process, the disorder degree increases from 0.85 to 1.59, and then decreases slightly to 1.41 with the rise of temperature. Additionally, the oxygen containing functional groups are removed with the increasing reduction temperature, and these functional groups can be removed at specific temperatures. In the lower temperature stage (100–200 ?C), the first kind of oxygen containing functional group removed is the hydroxyl group (C—OH) and the epoxy group (C—O—C) is the second. In the higher temperature stage (250—350 ?C), the main removed oxygen containing functional groups are the epoxy group (C—O—C) and the carbonyl group (C=O). The materials treated at 150, 200, 350 ?C exhibit n-type, ambipolar, and p-type behaviors, respectively, while rGO-200 exhibits considerable increase in resistance upon exposure to hydrogen gas. rGO-200 exhibits very small decrease of resistance at room temperature and moderate increase of resistance at elevated temperatures upon exposure to hydrogen gas, while rGO-350 exhibits considerable decrease of resistance at room temperature upon exposure to hydrogen gas. These results indicate that the reduction temperature affects the distribution of density of states (DOS) in the band gap as well as the band gap size. The graphene oxide and the reduced products at low temperature show good sensitivity to hydrogen gas. With the increasing reduction temperature, the sensitivity fades while the response time and recovery time increases. The gas sensor exhibits high sensitivity (88.56%) and short response time (30 s) when exposed to the 10?4 hydrogen gas at room temperature.

关键词

还原温度/氧化石墨烯/室温/H2敏感性能

Key words

reduction temperature/graphene oxide/room temperature/hydrogen gas sensing

引用本文复制引用

陈浩,彭同江,刘波,孙红娟,雷德会..还原温度对氧化石墨烯结构及室温下H2 敏感性能的影响[J].物理学报,2017,66(8):26-35,10.

基金项目

国家自然科学基金(批准号:U1630132,41272051)和西南科技大学研究生创新基金(批准号:15ycx074)资助的课题. Project supported by the National Natural Science Foundation of China (Grant Nos.U1630132,41272051) and the Post-graduate Innovation Fund of Southwest University of Science and Technology,China (Grant No.15ycx074). (批准号:U1630132,41272051)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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