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Understanding the anatase–rutile phase junction in charge separation and transfer in a TiO2 electrode for photoelectrochemical water splitting

机译:了解用于光电化学水分解的TiO2电极中电荷分离和转移中的锐钛矿-金红石相结

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摘要

New insight into junction-based designs for efficient charge separation is vitally important for current solar energy conversion research. Herein, an anatase–rutile phase junction is elaborately introduced into TiO2 films by rapid thermal annealing treatment and the roles of phase junction on charge separation and transfer are studied in detail. A combined study of transient absorption spectroscopy, electrochemical and photoelectrochemical (PEC) measurements reveals that appropriate phase alignment is essential for unidirectional charge transfer, and a junction interface with minimized trap states is crucial to liberate the charge separation potential of the phase junction. By tailored control of phase alignment and interface structure, an optimized TiO2 film with an appropriately introduced phase junction shows superior performance in charge separation and transfer, hence achieving ca. 3 and 9 times photocurrent density enhancement compared to pristine anatase and rutile phase TiO2 electrodes, respectively. This work demonstrates the great potential of phase junctions for efficient charge separation and transfer in solar energy conversion applications.
机译:对于有效的电荷分离,基于结的设计的新见解对于当前的太阳能转换研究至关重要。在本文中,通过快速热退火处理将锐钛矿-金红石相连接精细地引入到TiO2薄膜中,并详细研究了相连接对电荷分离和转移的作用。瞬态吸收光谱法,电化学和光电化学(PEC)测量的组合研究表明,适当的相位对准对于单向电荷转移至关重要,具有最小陷阱态的结界面对于释放相结的电荷分离潜力至关重要。通过对相位对准和界面结构进行量身定制的控制,具有适当引入的相结的优化TiO2薄膜在电荷分离和转移方面表现出卓越的性能,因此可实现约1.5%的电荷分离和转移。与原始锐钛矿和金红石相TiO2电极相比,光电流密度分别提高了3倍和9倍。这项工作证明了相结在太阳能转换应用中有效电荷分离和转移的巨大潜力。

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