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Stability Of Tio_2 Nanotube Arrays In Photoelectrochemical Studies

机译:Tio_2纳米管阵列在光电化学研究中的稳定性

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摘要

Photoelectrochemical (PEC) hydrogen generation gives an opportunity to acquire energy by means of clean and renewable resources such as water and solar light. A major problem in the PEC system is the stability of the photoanode material for long-term applications. Recently, self-assembled titanium dioxide (TiO_2) semiconductors (and their hybrids) have shown potential to generate hydrogen, in the PEC system. In the present investigation, stability of the nanotubular TiO_2 in 1 M KOH solution under illumination conditions is investigated. The photoanode is found to be stable (in terms of activity and morphologically) for one month (8 h/day) without much change in the hydrogen generation rate. Possible photoelectrochemical reactions that can be responsible for degradation of performance of nanotubular TiO_2 material are identified. Various spectroscopic and electrochemical measurements, viz., SEM, XRD, DRUV-Vis and Mott-Schottky are employed to confirm that the nanotubular TiO_2 photoanode can be used for long-term applications.
机译:光电化学(PEC)氢的产生提供了通过清洁和可再生资源(例如水和太阳光)获取能量的机会。 PEC系统中的主要问题是长期应用中光阳极材料的稳定性。最近,自组装的二氧化钛(TiO_2)半导体(及其杂化物)在PEC系统中显示出产生氢的潜力。在本研究中,研究了纳米管TiO_2在1 M KOH溶液中在光照条件下的稳定性。发现光阳极在一个月(8小时/天)下稳定(就活性和形态而言),而氢生成速率没有太大变化。确定了可能导致纳米管TiO_2材料性能下降的光电化学反应。各种光谱和电化学测量,即SEM,XRD,DRUV-Vis和Mott-Schottky被用来确认纳米管TiO_2光阳极可用于长期应用。

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