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High-efficiency SrTiO3/TiO2 hetero-photoanode for visible-light water splitting by charge transport design and optical absorption management

机译:高效SrTiO3 /二氧化钛hetero-photoanode可见光分解水的电荷传输设计和光学吸收管理

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摘要

Herein, a two-pronged approach to obtain excellent visible-light performance of SrTiO3/TiO2 photoelectrodes for water oxidation is presented. More specifically, the combination of hetero-constructing SrTiO3 nanocubes and Cr3+/Ti3+ dual-doping has been demonstrated for achieving high efficiency of charge separation and extending photoresponse of TiO2 nanotube arrays from the UV to visible light region. As expected, this unique Cr-SrTiO3-x/Cr-TiO2-x photoanode exhibited remarkably improved PEC performance for water splitting (4.05 mA cm(-2)) under visible light irradiation, which is more than 100 times higher than that of pristine TiO2 nanotube arrays. Additionally, the photocurrent intensity as well as water splitting behavior remain constant even after long time irradiation, revealing its high PEC as well as structure stability. Thereby, the rational design of the interface charge transport and precise management of optical absorption endow the TiO2-based PEC system with excellent and stable visible-light performance for water splitting.
机译:,一个双管齐下的方法来获得优秀可见光SrTiO3 /二氧化钛的性能光电极水氧化。更具体地说,的结合hetero-constructing SrTiO3 nanocubes和Cr3 + / Ti3 + dual-doping已经证明实现高电荷分离效率和扩展二氧化钛纳米管的光响应数组从紫外到可见光区域。预期,这种独特的Cr-SrTiO3-x / Cr-TiO2-x光电阳极表现出显著改善压电陶瓷性能对水分裂马(4.05厘米(2))在可见光照射下,哪个更超过100倍的原始二氧化钛纳米管阵列。强度以及水分裂行为保持不变,即使长时间照射,揭示其高压电陶瓷以及结构稳定。界面电荷传输和精确管理光学吸收赋予TiO2-based派克系统的和稳定的可见光光解水制氢研究的性能。

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