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Hydrogen Production on Ag-Pd/TiO2 Bimetallic Catalysts: Is there a Combined Effect of Surface Plasmon Resonance with Schottky Mechanism on the Photo-Catalytic Activity?

机译:AG-PD/TIO2双金属催化剂上的氢生产:表面等离子体共振与肖特基机制对光催化活性的综合作用吗?

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Despite many observations that plasmonics can enhance photocatalytic reactions, their relative role in the overall reaction rate is not thoroughly investigated. Here we report that silver nanoparticles contribution in the reaction rate by its plasmonic effect is negligible when compared to that of Pd (Schottky effect). To conduct the study a series of AgPd/TiO2 catalysts have been prepared, characterized and tested for H2 production from water in the presence of an organic sacrificial agent. Pd was chosen as a standard high work function metal needed for the Schottky junction to pump away electrons from the conduction band of the semiconductor and Ag (whose work function is ca. 1 eV lower than that of Pd) for its high plasmonic resonance response at the edge of the bandgap of TiO2. While H2 production rates showed linear dependency on plasmonic response of Ag in the PdAg series, the system performed less than that of pure Pd. In other words, the plasmonic contribution of Ag in the AgPd/TiO2 catalyst for hydrogen production, while confirmed using different excitation energies, is small. Therefore, the "possible" synergistic effect of plasmonic (in the case of Ag) and Schottky-mechanism (in the case of Pd) is minor when compared to that of Schottkyeffect alone.
机译:尽管有很多观察到血浆可以增强光催化反应,但它们在总体反应速率中的相对作用尚未得到彻底研究。在这里,我们报告说,与PD相比,银纳米颗粒通过其等离子体效应在反应速率上的贡献可忽略不计(Schottky效应)。为了进行研究,在存在有机牺牲剂的情况下,已经制备了一系列AGPD/TIO2催化剂,并测试了水从水中产生的H2。选择PD作为Schottky结所需的标准高功函数金属,以使电子从半导体和Ag的传导带(其工作函数低于PD低于PD的传导带),以便其高等离子共振响应在TiO2带隙的边缘。虽然H2的生产速率显示出对PDAG系列中Ag的等离子反应的线性依赖性,但该系统的执行少于纯PD。换句话说,AG在AGPD/TIO2催化剂中对氢产生的等离子贡献虽然使用不同的激发能证实,但很小。因此,与单独的SchottkyFect相比,等离激元(在Ag)和Schottky机构(在PD的情况下)的“可能”协同作用很小。

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