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Conductive Black Titania Nanomaterials for Efficient Photocatalytic Degradation of Organic Pollutants

机译:导电黑二氧化钛纳米材料,用于有机污染物的有效光催化降解

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摘要

Titanium dioxide (TiO2) as an important semiconductor is widely used in the fields of solar cell, solar thermal collectors, and photocatalysis, but the visible-light power harvest remains insufficient due to the little effective visible-light absorption and many carrier-recombination centers originating from the wide band gap structure. Herein, conductive black titania (BT) nanomaterials with crystalline-TiO2-core/amorphous-TiO2-x-shell structure prepared through two-zone Al-reduction route are found efficient in photocatalyzing the degradation of organic pollutants to environmentally friendly products under full solar and even visible light irradiation. The unique core-shell structure and numerous surface oxygen vacancies or Ti3+ species in the amorphous layer accompanying prominent physicochemical properties of narrow band gap, high carrier concentration, high electron mobility, and excellent separation and transportation of photoinduced e(-)-h(+) pairs result in exceptional photocatalytic efficiency. The optimized BT-500 (pristine TiO2 treated at 500 degrees C during two-zone Al-reduction process) catalyst achieves superior photocatalytic degradation rates for toluene and ethyl acetate as well as an excellent photostability with high degradation efficiency of 93% for the 6th reuse. Graphic
机译:作为重要的半导体,作为重要的半导体,广泛应用于太阳能电池,太阳能热收集器和光催化的领域,但由于有效的可见光吸收和许多载体重组中心,可见光功率收获仍然不足源自宽带隙结构。这里,通过双区Al还原途径制备的具有晶体-TiO2-核/无晶硅-TiO2-X壳结构的导电黑二氧化钛(BT)纳米材料在光催化下,在全景下的有机污染物的降解到环保产品中,有效甚至可见光辐照。独特的核心壳结构和许多表面氧空位或无定形层中的Ti3 +物种随附狭窄的带隙,高载流子浓度,高电子迁移率的突出物理性质,以及光突出的E( - ) - H的优异分离和运输(+ )对导致卓越的光催化效率。优化的BT-500(在两区Al还原过程中以500℃处理的原始TiO2)催化剂实现了甲苯和乙酸乙酯的优异的光催化降解速率,以及高度降解效率的优异的光稳定性为6小时重用。形象的

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