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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >A room temperature ammonia gas sensor based on cellulose/TiO2/PANI composite nanofibers
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A room temperature ammonia gas sensor based on cellulose/TiO2/PANI composite nanofibers

机译:基于纤维素/ TiO2 / PANI复合纳米纤维的室温氨气传感器

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We report a facile approach to prepare cellulose/titanium dioxide/polyaniline (cellulose/TiO2/PANI) composite nanofibers that involves P-N heterojunctions at the interface of p-type PANI and n-type TiO2. This work found that the P-N heterojunctions could improve ammonia sensing properties of the prepared nanofibers. Electrospun cellulose acetate nanofibers were deacetylated to prepare regenerated cellulose nanofibers, and then the obtained cellulose nanofibers were immersed into TiO2 sol to adsorb TiO2 nanoparticles onto the surface of them to fabricate cellulose/TiO2 composite nanofibers. In -situ polymerization of aniline was utilized to deposit PANI on the surface of cellulose/TiO2 composite nanofibers. The gas sensing properties of the prepared nanofibers were evaluated by a home-made test system. The cellulose/TiO2/PANI and cellulose/PANI composite nanofibers were exposed to 10, 30, 50, 100, 150, 200 and 250 ppm ammonia vapor at room temperature, respectively. It was found that the response values and sensitivity of cellulose/TiO2/PANI were much higher than those of cellulose/PANI composite nanofibers. Enhanced sensing was obtained by cellulose/TiO2/PANI due to the P-N heterojunctions whose depletion layer would be widened when the composite nanofibers were exposed to ammonia, resulting in their resistance increased dramatically. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们报告了一种简便的方法来制备纤维素/二氧化钛/聚苯胺(纤维素/ TiO2 / PANI)复合纳米纤维,其中涉及在p型PANI和n型TiO2界面处的P-N异质结。这项工作发现P-N异质结可以改善所制备纳米纤维的氨感测性能。将静电纺丝的醋酸纤维素纳米纤维脱乙酰以制备再生的纤维素纳米纤维,然后将获得的纤维素纳米纤维浸入TiO2溶胶中,以将TiO2纳米粒子吸附到其表面上,从而制备纤维素/ TiO2复合纳米纤维。利用苯胺的原位聚合将PANI沉积在纤维素/ TiO2复合纳米纤维的表面。通过自制的测试系统评估了制备的纳米纤维的气敏特性。纤维素/ TiO2 / PANI和纤维素/ PANI复合纳米纤维分别在室温下暴露于10、30、50、100、150、200和250 ppm的氨气中。发现纤维素/ TiO2 / PANI的响应值和灵敏度远高于纤维素/ PANI复合纳米纤维的响应值和灵敏度。由于P / N异质结的存在,当复合纳米纤维暴露于氨气时,其耗尽层将变宽,从而使纤维素/ TiO2 / PANI增强了传感,从而使其电阻急剧增加。 (C)2016 Elsevier B.V.保留所有权利。

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