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首页> 外文期刊>Journal of Advanced Ceramics >Enhanced photocatalytic activity in Ag-nanoparticle-dispersed BaTiOSubscript3/Subscript composite thin films: Role of charge transfer
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Enhanced photocatalytic activity in Ag-nanoparticle-dispersed BaTiOSubscript3/Subscript composite thin films: Role of charge transfer

机译:纳米银分散的BaTiO 3 复合薄膜中增强的光催化活性:电荷转移的作用

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摘要

Optical absorption and photocatalytic activity can be enhanced by surface plasmon resonance (SPR) effect, but the charge transfer (CT) mechanism between the dispersed noble metal nanoparticles (NPs) and the semiconductor matrix has been ignored. Herein, we adduce a direct and strong evidence in Ag-nanoparticle-dispersed BaTiO3 (Ag/BTO) composite films through X-ray photoelectron and photoluminescence spectra which reveals the CT from BTO trapped by Ag NPs under UV light and from Ag NPs to BTO under visible light. Owing to the broadened optical absorption and efficient CT from Ag NPs to BTO, the Ag25/BTO film manifests the optimal photocatalytic activity under the irradiation of visible light rather than UV–Vis light. Our work provides a helpful insight to design highly efficient plasmonic photocatalyst through considering the synergetic effect of the CT between metal and semiconductor on the enhanced photocatalytic activity.
机译:表面等离子体激元共振(SPR)效应可以增强光吸收和光催化活性,但是分散的贵金属纳米颗粒(NPs)与半导体基质之间的电荷转移(CT)机理已被忽略。本文中,我们通过X射线光电子和光致发光光谱,得出了分散在银纳米粒子中的BaTiO3(Ag / BTO)复合膜的直接而有力的证据,揭示了在紫外光下被银纳米粒子捕获的BTO和从银纳米粒子到BTO的CT在可见光下。由于从银纳米颗粒到BTO的光吸收和CT的扩大,Ag25 / BTO膜在可见光而不是UV-Vis的照射下表现出最佳的光催化活性。通过考虑金属与半导体之间的CT协同作用对增强的光催化活性的影响,我们的工作为设计高效等离激元光催化剂提供了有益的见解。

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