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首页> 外文期刊>Scientific reports. >Exceptional performance of photoelectrochemical water oxidation of single-crystal rutile TiO2 nanorods dependent on the hole trapping of modified chloride
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Exceptional performance of photoelectrochemical water oxidation of single-crystal rutile TiO2 nanorods dependent on the hole trapping of modified chloride

机译:单晶金红石型TiO2纳米棒的光电化学水氧化性能取决于改性氯的空穴捕获

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It is highly desired to effectively trap photogenerated holes for efficient photoelectrochemical (PEC) water oxidation to evolve O2 on oxide semiconductors. Herein, it is found for the first time mainly based on the time-resolved- and atmosphere-controlled- surface photovoltage responses that the modified chloride would effectively trap photogenerated holes so as to prolong the charge lifetime and hence promote charge separation of single-crystal rutile TiO2 nanorods. Its strong capacity to trap holes, comparable to the widely-used methanol and Co(II) phosphate, is well responsible for the exceptional photoactivities for PEC water oxidation to evolve O2 on rutile nanorods with a proper amount of chloride modified, about 2.5-time high as that on the resulting anatase nanoparticles, even 10-time if the surface area is considered. Moreover, it is suggested that the hole trapping role of chemically-adsorbed chloride is related to its lonely-pair electrons, and to the subsequently-produced intermediate Cl atoms with proper electronegativity for evolving O2. Interestingly, this finding is also applicable to the chloride-modified anatase TiO2. This work will provide a feasible strategy to design high-activity nanostructured semiconductor photoanodes for PEC water oxidation, even for overall water splitting.
机译:迫切需要有效地捕获光生空穴以进行有效的光电化学(PEC)水氧化,从而在氧化物半导体上释放出O2。在此,首次主要基于时间分辨和大气控制的表面光电压响应,发现改性氯化物将有效地捕获光生空穴,从而延长电荷寿命,从而促进单晶的电荷分离。金红石型TiO2纳米棒。它具有很强的捕获孔的能力,可与广泛使用的甲醇和磷酸Co(II)相媲美,这是PEC水氧化的出色光活性,可在金红石纳米棒上释放出O2,并经适量的氯化物修饰,将O2释放约2.5倍。与所得的锐钛矿型纳米粒子相比,即使考虑到表面积,也可以达到10倍。此外,建议化学吸附的氯化物的空穴俘获作用与它的孤对电子有关,并且与随后产生的具有适当电负性的中间Cl原子一起释放出O2有关。有趣的是,这一发现也适用于氯化物改性的锐钛矿型TiO2。这项工作将为设计用于PEC水氧化甚至整个水分解的高活性纳米结构半导体光阳极提供可行的策略。

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