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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >In situ synthesis and modification of cotton fibers with bismuthoxychloride and titanium dioxide nanoparticles for photocatalytic applications
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In situ synthesis and modification of cotton fibers with bismuthoxychloride and titanium dioxide nanoparticles for photocatalytic applications

机译:本地合成及改性棉纤维与双氧化铋和用于光催化应用的二氧化钛纳米粒子

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摘要

The successful attachment of semiconducting BiOCl and TiO2 nanoparticles to cotton fibers by in situ approaches is reported. The influence of the experimental conditions required for both Cotton-NPs preparation was investigated, namely the effect of the temperature required for TiO2 synthesis. A homogeneous, continuous and stable TiO2 layer, coating the fibers surface, was achieved, whereas BiOCl particles were found distributed on the fiber surface. The properties conferred upon NPs immobilization were evaluated considering morphological, structural and optical aspects as well as the photocatalytic ability granted by the nanoparticles, by means of microscopic and spectroscopic techniques (SEM, TEM, XRD and UV-vis). The functionalization with NPs conferred catalytic activity to the new materials, in the naphthol blue black (NBB) photodegradation, involving distinct oxidant species participation. The synthesis under mild conditions, at room temperature, the stability and the extended light absorption to the visible range of BiOCl when exposed to UV-vis light irradiation confers further advantage to the Cot-BiOCl sample as compared to the Cot-TiO2. However, the extended reusability of the Cot-TiO2 modified fibers imparts significant advantage to this material. Nevertheless, both modified fiber materials show promising potential applicability for photocatalysis and self-cleaning purposes. (C) 2018 Elsevier B.V. All rights reserved.
机译:据报道,通过原位方法将半导体BioCl和TiO2纳米颗粒的成功附着在棉纤维上。研究了棉NPS制剂所需的实验条件的影响,即TiO 2合成所需的温度的效果。达到均匀,连续且稳定的TiO 2层,涂覆纤维表面,而发现BioCl颗粒在纤维表面上分布。通过微观和光谱技术(SEM,TEM,XRD和UV-VI),评估赋予NPS固定的性能,以及由纳米颗粒授予的光催化能力(SEM,TEM,XRD和UV-VI)。与NPS的官能化赋予新材料催化活性,在萘酚蓝黑(NBB)光降解中,涉及明显的氧化物种参与。与紫外 - vis光照射相比,在室温下,在室温下,在室温下,在室温,稳定性和延伸光吸收到可见的BioCl的光吸收,与Cot-TiO 2相比,对婴儿床 - BioCl样品进一步优先。然而,Cot-TiO 2改性纤维的延长可重用性赋予该材料的显着优势。然而,两种改性的纤维材料都表明了对光催化和自清洁目的的潜在适用性。 (c)2018 Elsevier B.v.保留所有权利。

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