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Photoelectrical response of mesoporous nickel oxide decorated with size controlled platinum nanoparticles under argon and oxygen gas

机译:氩气和氧气下尺寸控制铂纳米粒子装饰的中孔镍氧化物的光电响应

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摘要

The visible light photoelectrical properties of a p-type mesoporous nickel oxide (MNO) support was investigated upon the decoration of size controlled, 1.6 nm, 6.4 nm and 7.9 nm Pt nanoparticles. The near room temperature photoelectrical response of the MNO was 3 times higher after decoration of 1.6 nm Pt nanoparticles with a loading of 1 wt%. MNO decorated with smaller Pt nanoparticles showed the highest photoresponse. The surrounding atmosphere has striking effect on the photoelectrical behavior, as adsorbed oxygen induced 32% lower photoelectrical response compared to that of argon. The noble metal nanoparticles show both electronic and chemical sensitization: the first functioning as an electron sink resulting in a new band structure of the photocatalyst, and the second interacting chemically with the oxygen and argon adsorbed from the environment. A model is proposed using heterojunctions theory comprising a new induced oxygen potential that may explain the lower photoresponse in the presence of oxygen. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了P型中孔氧化镍(MNO)载体的可见光光电性质,在尺寸控制的1.6nm,6.4nm和7.9nm pt纳米粒子的装饰上进行了研究。在装饰1wt%的纳米粒子的装饰1wt%后,MnO的接近室温度光电响应是3倍。用较小的PT纳米粒子装饰的MNO显示了最高的光响应。周围的气氛对光电行为引起了醒目的影响,与氩气相比,吸附的氧诱导光电响应32%。贵金属纳米颗粒显示电子和化学敏化:作为电子水槽的首次发作,导致光催化剂的新带结构,以及用氧气和吸附来自环境的氩气和氩气的第二相互作用。使用杂交功能理论提出了一种模型,该杂交理论包括新的诱导的氧气电位,其可以解释氧气存在下的较低光响应。 (c)2016年Elsevier B.v.保留所有权利。

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