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Titania-Hydroxypropyl Cellulose Thin Films for the Detection of Peroxide Vapors

机译:二氧化钛-羟丙基纤维素薄膜用于检测过氧化物蒸气

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Titania nanoparticles in a hydroxypropyl cellulose matrix produced using a sol—gel method were utilized to prepare films on polycarbonate slides and coatings on cellulose papers. The exposure of these materials to hydrogen peroxide gas leads to the development of an intense yellow color. By using an inexpensive web camera and a tungsten lamp to measure the reflected light, first-order behavior in the color change was observed when exposed to peroxide vapor of less than 50 ppm. For 50 mass percent titania nanoparticles in hydroxypropyl cellulose films on polycarbonate, the detection limit was estimated to be 90 ppm after a 1 min measurement and 1.5 ppm after a 1 h integration. The coatings on the filter paper had a 3-fold higher sensitivity compared to the films, with a detection limit of 5.4 ppm peroxide for a 1 min measurement and 0.09 ppm peroxide for a 1 h integration. The high sensitivity and rapid response of these films make them a promising material for use as a sensitive peroxide detector.
机译:使用溶胶-凝胶法生产的羟丙基纤维素基质中的二氧化钛纳米颗粒可用于制备聚碳酸酯玻片上的薄膜和纤维素纸上的涂层。这些材料暴露于过氧化氢气体会导致形成深黄色。通过使用廉价的网络摄像机和钨灯来测量反射光,当暴露于小于50 ppm的过氧化物蒸汽时,观察到颜色变化的一级行为。对于聚碳酸酯上羟丙基纤维素薄膜中二氧化钛纳米粒子的质量百分比为50%,测量1分钟后检测限估计为90 ppm,积分1 h后检测限为1.5 ppm。与滤膜相比,滤纸上的涂层的灵敏度高3倍,检测限为1分钟测量为5.4 ppm过氧化物,1 h积分为0.09 ppm过氧化物。这些薄膜的高灵敏度和快速响应特性使其成为用作灵敏过氧化物检测器的有前途的材料。

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