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Synthesis of Magnetite-Semiconductor-Metal Trimer Nanoparticles through Functional Modular Assembly: A Magnetically Separable Photocatalyst with Photothermic Enhancement for Water Reduction

机译:通过功能模块化组合合成磁铁矿半导体 - 金属三聚体纳米粒子:磁性可分离的光催化剂,具有冷热增强水分降低

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摘要

Hybrid nanoparticles have intrinsic advantages to achieve better activity in photocatalysis compared to single component materials, as it can synergistically combine functional components, which promote light absorption, charge transportation, surface reaction, and catalyst regeneration. Through functional modular assembly, a rational and stepwise approach has been developed to construct Fe3O4-CdS-Au trimer nanoparticles and its derivatives as magnetically separable catalysts for photothermo-catalytic hydrogen evolution from water. In a typical step-by-step synthetic process, Fe3O4-Ag dimers, Fe3O4-Ag2S dimers, Fe3O4-CdS dimers, and Fe3O4-CdS-Au trimers were synthesized by seeding growth, sulfuration, ion exchange, and in situ reduction consequently. Following the same reaction route, a series of derivative trimer nanoparticles with alternative semi-conductor and metal were obtained for water-reduction reaction. The experimental results show that the semiconductor acts as an active component for photocatalysis, the metal nanoparticle acts as a cocatalyst for enhancement of charge separation, and, the Fe3O4 component helps in the convenient separation of catalysts in magnetic-field and improves photocatalytic activity under near-infrared illumination due to photothermic effect.
机译:与单一组分材料相比,杂化纳米颗粒具有在光催化中实现更好的活性的内在优点,因为它可以协同结合功能组分,这促进光吸收,电荷,表面反应和催化剂再生。通过功能模块化组件,已经开发了一种理性和逐步的方法来构建Fe3O4-CDS-Au三聚体纳米颗粒及其衍生物作为用于从水的光热催化氢进化的磁性可分离催化剂。在典型的逐步合成方法中,通过播种生长,硫化,离子交换和原位还原,合成Fe 3 O 4-Ag二聚体,Fe 3 O 4-Ag 2 S二聚体,Fe3O4-Ag2S二聚体,Fe 3 O 4-Ag 2 S二聚体和Fe 3 O 4-CDS-Au三聚体。在相同的反应途径之后,得到一系列具有替代半导体和金属的衍生三聚体纳米颗粒,用于降低水还原反应。实验结果表明,半导体用作光催化的活性成分,金属纳米粒子用作增强电荷分离的助催化剂,并且Fe3O4组分有助于磁场中催化剂的方便分离,并改善近的光催化活性。 - 过热效果引起的微射照相。

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