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Conductive Polyaniline-Based Microwire Arrays for SO2 Gas Detection

  • Zhihao Zhao
  • , Chao Ma
  • , Lingyun Xu
  • , Zhenwei Yu*
  • , Dong Wang
  • , Lei Jiang
  • , Xiangyu Jiang*
  • , Guangcheng Gao*
  • *此作品的通讯作者
  • Beihang University
  • University of Science and Technology Beijing
  • Shenzhen Institute of Advanced Technology
  • CAS - Technical Institute of Physics and Chemistry
  • University of Chinese Academy of Sciences
  • Ji Hua Laboratory
  • Capital Medical University

科研成果: 期刊稿件文章同行评审

摘要

Polyaniline-based conductive polymers are promising electrochemical sensor materials due to their unique physical and chemical properties, such as good gas absorption, low dielectric loss, and chemical and thermal stabilities. The sensing performance is highly dependent on the structure and dimensions of the polyaniline-based conductive polymers. Although in situ oxidative polymerization combined with the self-assembly process has become one of the main processes for the preparation of flexible polyaniline-based gas sensors, how to prepare polyaniline materials into uniformly arranged microwire arrays is still an urgent problem. In this paper, an in-depth study was conducted on the preparation of polyaniline microwire arrays by combining a wettability interface dewetting process and a liquid-film-induced capillary bridges method. The factors influencing the preparation of polyaniline microwire arrays, including solution concentration, template width, evaporation temperature, and evaporation time, were investigated in detail. The wire formation rates were recorded from the results of SEM images. 100% microwires formation rate can be obtained by using a 1.0 mg mL-1 concentration of polyaniline solution and a 10 μm silicon template at an evaporation temperature of 80 °C for 18 h. The prepared microwire arrays can realize sulfur dioxide sensing at room temperature with a response speed of about 20 s and can detect sulfur dioxide gas as low as 1 ppm. Thus, the liquid-film-induced capillary bridge method shows a new possibility to prepare gas sensor devices for insoluble polymers.

源语言英语
页(从-至)38938-38945
页数8
期刊ACS Applied Materials and Interfaces
15
32
DOI
出版状态已出版 - 16 8月 2023

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