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首页> 外文期刊>Sensors and Actuators >Dual-responsive cellulose fabric based on reversible acidichromic and photoisomeric polymeric dye containing pendant azobenzene
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Dual-responsive cellulose fabric based on reversible acidichromic and photoisomeric polymeric dye containing pendant azobenzene

机译:基于含偶氮苯侧基的可逆酸致变色和光异构聚合物染料的双响应纤维素织物

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摘要

An acid and UV dual-responsive cellulose fabric was developed via coating with a polymeric dye based on waterborne polyurethane and azobenzene chromophore to provide additional smart characteristics for textiles. The incorporation of azobenzene chromophore into polyurethane chain through chemical bonding enhanced the thermal stability. The maximum absorption peak of the polymeric dye and its coated fabric shifted from 410 nm to 520 nm upon pH decreasing from 6 to 1, accompanying with pronounced color change from yellow to amaranth due to structural transition from diazo to hydrazone form. The acidichromic property of the polymeric dye also presents an outstanding repetition stability. Thetrans-isomers in the polymeric dye transformed intocis-isomers rapidly (1 s) in response to UV irradiation, while its recovery was much slower (6 h) in dark due to the large molecular and volume of polyurethane chains. Upontrans-cisisomerism, the coated fabric presented slight color change between yellow and orange after alternative UV irradiation and dark. The stimuli-responsive cellulose fabric with reversible acidichromic and photoisomeric properties can be a promising candidate for developing a wearable and flexible sensor to monitor environmental changes.
机译:通过涂覆基于水性聚氨酯和偶氮苯发色团的聚合染料,开发了一种酸性和紫外线双响应纤维素织物,从而为纺织品提供了额外的智能特性。通过化学键合将偶氮苯生色团结合到聚氨酯链中,提高了热稳定性。 pH值从6降低到1时,聚合物染料及其涂层织物的最大吸收峰从410 nm移至520 nm,同时由于重氮形式向structural形式的结构转变,其颜色也从黄色显着变为a菜红色。聚合染料的酸致变色特性还表现出出色的重复稳定性。聚合物染料中的反式异构体在紫外线的作用下迅速转变为顺式异构体(1µs),而在黑暗中由于聚氨酯链的分子和体积较大,其恢复速度要慢得多(6µh)。在反式-顺式异构化时,在交替的紫外线照射和黑暗之后,经涂布的织物在黄色和橙色之间呈现轻微的颜色变化。具有可逆的酸致变色和光异构特性的刺激响应性纤维素织物可以成为开发可穿戴和柔性传感器以监测环境变化的有希望的候选者。

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