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首页> 外文期刊>Nanoscale >Plasmonic hot carrier-driven oxygen evolution reaction on Au nanoparticles/TiO2 nanotube arrays
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Plasmonic hot carrier-driven oxygen evolution reaction on Au nanoparticles/TiO2 nanotube arrays

机译:电浆热carrier-driven氧进化反应Au纳米粒子/二氧化钛纳米管阵列

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The use of hot carriers generated from the decay of localized surface plasmon resonance in noble metal nanoparticles is a promising concept for photocatalysis. Here, we report the enhancement of photocatalytic activity by the flow of hot electrons on TiO2 nanotube arrays decorated with 5-30 nm Au nanoparticles as photoanodes for photoelectrochemical water splitting. This enhanced photocatalytic activity is correlated to the size of the Au nanoparticles, where higher oxygen evolution was observed on the smaller nanoparticles. Conductive atomic force microscopy and ultraviolet photoelectron spectroscopy were used to characterize the Schottky barrier between Au and TiO2, which reveals a reduction in the Schottky barrier with the smaller Au nanoparticles and produces an enhanced transfer of photoinduced hot carriers. This study confirms that the higher photocatalytic activity was indeed driven by the hot electron flux generated from the decay of localized surface plasmon resonance.
机译:使用热衰变产生的运营商局部表面等离子体共振的高尚金属纳米粒子是一种很有前途的概念光催化作用。光催化活性的热流动电子在二氧化钛纳米管阵列装饰着5 - 30 nm Au纳米颗粒作为光电阳极光电化学分解水。提高光催化活性相关Au纳米颗粒的大小,更高观察氧进化越小纳米粒子。和紫外线光电子能谱用于描述之间的肖特基势垒盟和二氧化钛,它揭示了减少肖特基势垒与小盟纳米粒子并产生一个增强的传输光诱导的热运营商。更高的光催化活性实际上由热生成电子通量局部表面等离子体的衰减共振。

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