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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Flexible sensing fibers based on polyaniline-coated polyurethane for chloroform vapor detection
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Flexible sensing fibers based on polyaniline-coated polyurethane for chloroform vapor detection

机译:基于聚苯胺涂层的聚氨酯的柔性传感纤维,用于氯仿蒸气检测

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Novel flexible composite fibers with good structural stability were fabricated by coating nanostructured polyaniline (PANI) layers on the surface of traditional polyurethane (PU) fibers through in situ chemical oxidative polymerization. Their chemoresistive characteristics for organic vapor compounds showed a rapid and sensitive response, and especially high selectivity. The influence of the fiber structures on the sensing properties for chloroform vapor detection was further discussed, and some features such as high sensitivity (4 x 10~(-4) ppm~(-1)), fast response time (less then 30 s), and low detection limit (30 ppm) were achieved. The remarkable sensing performances of the composite fibers are not only related to the change in the conformation of the PANI chains, but also in the conducting pathway of the PANI layers due to the reversible solvent-swelling of the PU matrix.
机译:通过原位化学氧化聚合在传统聚氨酯(PU)纤维表面涂覆纳米结构聚苯胺(PANI)层,从而制造出具有良好结构稳定性的新型柔性复合纤维。它们对有机蒸气化合物的化学抗性表现出快速而灵敏的响应,尤其是高选择性。进一步讨论了纤维结构对氯仿蒸气检测传感特性的影响,并具有高灵敏度(4 x 10〜(-4)ppm〜(-1)),响应时间短(小于30 s)等特点。 ),检测限低(30 ppm)。复合纤维卓越的传感性能不仅与PANI链构象的变化有关,而且与PU基质的可逆溶剂溶胀导致的PANI层的导电途径有关。

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