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CuInS(2)nanoparticles embedded in mesoporous TiO(2)nanofibers for boosted photocatalytic hydrogen production

机译:嵌入中孔TiO(2)纳米纤维中的Cuins(2)纳米颗粒用于增强光催化氢气产生

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摘要

Coupling narrow-band semiconductors with TiO(2)photocatalysts is a promising avenue for simultaneously broadening their light absorption and accelerating charge separation, thus improving the solar-driven hydrogen generation. In this work, we devise a unique TiO2@CuInS(2)heterojunction photocatalyst through embedding CuInS(2)nanoparticles into mesoporous TiO(2)nanofibers. The obtained TiO2@CuInS(2)nanojunction possessed intimate interfacial contact, which efficiently promoted the charge separation, thus resulting in enhanced photocatalytic hydrogen production activity both under visible light and AM1.5 irradiation. After optimizing the component ratio of CuInS2, the corresponding TiO2@CuInS(2)sample delivered a significantly boosted photocatalytic H(2)production activity without any co-catalytic noble metals, up to 3 times as high as that of pure TiO(2)under AM1.5 irradiation. This study may provide new insights for designing and constructing highly efficient photocatalysts for solar hydrogen production.
机译:耦合带TiO(2)光催化剂的窄带半导体是一个有希望的途径,用于同时扩大光吸收和加速电荷分离,从而改善太阳能驱动的氢气产生。在这项工作中,我们通过将CuIns(2)纳米颗粒嵌入中孔TiO(2)纳米纤维中的嵌入CuIns(2)纳米粒子设计了独特的TiO2 @ Cuins(2)异质结光催化剂。所获得的TiO 2 @ cuins(2)纳米纳米纳入抗体界面接触,有效地促进了电荷分离,从而导致在可见光和AM1.5照射下的增强的光催化氢气产生活性。优化Cuins2的组分比例后,相应的TiO 2 @ cuins(2)样品在没有任何助催化的贵金属的情况下递送了显着提高的光催化H(2)的生产活性,高达纯TiO(2)的高度高3倍根据AM1.5辐照。本研究可以为设计和构建高效光催化剂进行太阳氢生产来提供新的见解。

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