首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Killing two birds with one stone: To eliminate the toxicity and enhance the photocatalytic property of CdS nanobelts by assembling ultrafine TiO2 nanowires on them
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Killing two birds with one stone: To eliminate the toxicity and enhance the photocatalytic property of CdS nanobelts by assembling ultrafine TiO2 nanowires on them

机译:用一块石头杀死两只鸟:通过在它们上组装超细TiO2纳米线来消除毒性并增强CDS纳米座的光催化性质

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摘要

Although CdS has been proven to be one of the best photocatalysts in visible light region, its photocorrosion characteristics and toxicity prohibit its practical applications in photocatalytic hydrogen generation and photodegradation of organic pollutants in waste water. In addition, the photocatalytic efficiency of single phase CdS nanostructure is still low due to the recombination of photo-induced carriers. In this paper, a facile modification of CdS nanobelts approach is proposed by assembling TiO2 nanowire on the surface of CdS nanobelts to form TiO2 nanowire/CdS nanobelt hybrid nanstructures. This approach can kill two birds with one stone, that is, to eliminate the photocorrosion induced nontoxicity, and enhance photocatalytic properties by inducing UV light active TiO2 nanowires, and enhance the photo-induced carrier separation ability. The cell cyto-compatibility experiments on TiO2 nanowire/CdS nanobelt hybrid photocatalyst proved that the toxicity of CdS nanobelts can be totally eliminated. At the same time, photodegradation performance of for CdS/TiO2 is over 3 times of that for CdS nanobelts and10 times of that for TiO2. This work gives a new insight in the field of photocatalytic water treatment.
机译:虽然CD已被证明是可见光区域中最佳光催化剂之一,但其光腐蚀特性和毒性禁止其在光催化氢生成和废水中有机污染物的光降解的实际应用。另外,由于光诱导载体的重组,单相Cds纳米结构的光催化效率仍然很低。本文通过将TiO2纳米线组装在CDS纳米螺纹表面上以形成TiO2纳米线/ Cds纳米二氧化物含氮纳米结构,提出了CDS纳米座的容易改性。这种方法可以用一块石头杀死两只鸟类,即消除光腐蚀诱导的无毒,通过诱导UV光活性TiO2纳米线来增强光催化性质,并增强光诱导的载体分离能力。 TiO2纳米线/ Cds纳米型杂交光催化剂的细胞细胞相容性实验证明了Cds纳米座的毒性可以完全消除。同时,Cds / TiO 2的光降解性能超过3倍对于TiO2的CD纳米氧化物和10倍。这项工作在光催化水处理领域提供了新的洞察力。

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