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Electrospun nanofibers of polymer composite as a promising humidity sensitive material

机译:高分子复合材料的电纺纳米纤维作为有希望的湿敏材料

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摘要

Nanofibers of a composite of a silicon-containing polyelectrolyte, polyethylene oxide and polyani-line (PANI) were obtained by electrospinning and heat treatment. The morphologies of the composite nanofibers were characterized by scanning electron microscopy, which showed that the nanofibers with a diameter of 250-500 nm formed a non-woven mat with highly porous structure. It was found that the polymer composite nanofibers showed impedance change from 6.3 × 10~6 to 2.5 × 10~4 Ω with the increment of relative humidity (RH) from 22 to 97% at room temperature, exhibiting high sensitivity and good linearity on a semi-logarithmic scale. In addition, they exhibited fast and highly reversible response characterized by very small hysteresis of ~2% RH and short response time (t_(90%): 7s and 19s for adsorption and desorption between 33 and 97%RH, respectively). The modification of the electrode with poly(diallyldimethylammonium chloride) prior to the deposition of nanofibers improved their humidity response, which may be related to the enhanced contact between the nanofibers and underlying substrate. The effect of PANI on the humidity response of the composite nanofibers was also investigated, and it was found that PANI effectively decreased the impedance of the nanofibers. The electrospun polymer composite nanofibers may find applications in the preparation of high performance humidity sensors.
机译:通过电纺丝和热处理,获得了含硅的聚电解质,聚环氧乙烷和聚苯胺(PANI)的复合材料的纳米纤维。通过扫描电子显微镜对复合纳米纤维的形貌进行表征,结果表明,直径为250-500 nm的纳米纤维形成了具有高度多孔结构的无纺毡。发现在室温下,聚合物复合纳米纤维的阻抗从6.3×10〜6变为2.5×10〜4Ω,相对湿度(RH)从22%增至97%,在高温下表现出高灵敏度和良好的线性。半对数标度。此外,它们表现出快速且高度可逆的响应,其特征为〜2%RH的滞后很小,响应时间短(t_(90%):7s和19s分别在33%和97%RH之间吸附和解吸)。在沉积纳米纤维之前,用聚二烯丙基二甲基氯化铵对电极进行改性可改善其湿度响应,这可能与纳米纤维与下面的基材之间增强的接触有关。研究了聚苯胺对复合纳米纤维湿度响应的影响,发现聚苯胺有效降低了纳米纤维的阻抗。电纺聚合物复合纳米纤维可在制备高性能湿度传感器中找到应用。

著录项

  • 来源
    《Sensors and Actuators》 |2009年第2期|390-395|共6页
  • 作者单位

    Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, PR China Key Laboratory of Macromolecule Synthesis and functionalization (Zhejiang University), Ministry of Education, Hangzhou 310027, PR China;

    Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, PR China Key Laboratory of Macromolecule Synthesis and functionalization (Zhejiang University), Ministry of Education, Hangzhou 310027, PR China Department of PolymerScienceand Engineering, Zhe-jiang University, 38 Zhe Da Road, Hangzhou 310027, PR China;

    Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, PR China Key Laboratory of Macromolecule Synthesis and functionalization (Zhejiang University), Ministry of Education, Hangzhou 310027, PR China;

    Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, PR China Key Laboratory of Macromolecule Synthesis and functionalization (Zhejiang University), Ministry of Education, Hangzhou 310027, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrospinning; nanofibers; composite; humidity sensor; polyelectrolyte; polyaniline;

    机译:电纺;纳米纤维综合;湿度传感器聚电解质聚苯胺;

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