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Enhanced Photoelectrochemical Water Splitting Performance of Anodic TiO2 Nanotube Arrays by Surface Passivation

机译:表面钝化增强阳极二氧化钛纳米管阵列的光电化学水分解性能

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摘要

One-dimensional anodic titanium oxide nanotube (TONT) arrays provide a direct pathway for charge transport, and thus hold great potential as working electrodes for electrochemical energy conversion and storage devices. However, the prominent surface recombination due to the large amount surface defects hinders the performance improvement. In this work, the surface states of TONTs were passivated by conformal coating of high-quality Al2O3 onto the tubular structures using atomic layer deposition (ALD). The modified TONT films were subsequently employed as anodes for photoelectrochemical (PEC) water splitting. The photocurrent (0.5 V vs Ag/AgCl) recorded under air mass 1.5 global illumination presented 0.8 times enhancement on the electrode with passivation coating. The reduction of surface recombination rate is responsible for the substantially improved performance, which is proposed to have originated from a decreased interface defect density in combination with a field-effect passivation induced by a negative fixed charge in the Al2O3 shells. These results not only provide a physical insight into the passivation effect, but also can be utilized as a guideline to design other energy conversion devices.
机译:一维阳极氧化钛纳米管(TONT)阵列为电荷传输提供了直接途径,因此具有巨大的潜力,可作为电化学能量转换和存储设备的工作电极。然而,由于大量的表面缺陷而引起的明显的表面复合阻碍了性能的提高。在这项工作中,通过使用原子层沉积(ALD)将高质量的Al2O3共形涂覆到管状结构上,钝化了TONTs的表面状态。改性的TONT薄膜随后用作光电化学(PEC)水分解的阳极。在空气质量为1.5的全局照明下记录的光电流(相对于Ag / AgCl为0.5 V)在具有钝化涂层的电极上呈现0.8倍的增强。表面复合率的降低是性能大幅提高的原因,这被认为是由于界面缺陷密度降低以及Al2O3壳中的负固定电荷引起的场效应钝化所致。这些结果不仅提供了钝化效果的物理洞察力,而且还可以用作设计其他能量转换设备的指南。

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