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Charge transport in Fe_2O_3 films deposited on nanowire arrays

机译:纳米线阵列上沉积的Fe_2O_3薄膜中的电荷传输

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The short diffusion length of photo-excited charge carriers in Fe_2O_3 is one of the factors limiting the water splitting efficiency of iron oxide based materials. To overcome this problem we are engineering transparent arrays of nanowires to act as conducting substrates for the Fe_2O_3. To help understand the charge transport characteristics of the Fe_2O_3 component we report transient photocurrent measurements performed on an absorbing thin film of Fe_2O_3 deposited by filtered arc deposition on conducting glass with a semi-transparent silver Schottky top contact. Ultraviolet laser pulses were used to generate charge carriers near the surface and the resulting current transients were measured. A simulation of this charge transport has also been developed. The sign of the observed transients was independent of applied bias, consistent with a fully depleted film. The measurements also suggest that recombination may play a significant factor in determining the transient shape. Further investigation is required to confidently predict mobilities.
机译:Fe_2O_3中光激发的载流子的短扩散长度是限制氧化铁基材料水分解效率的因素之一。为了克服这个问题,我们正在设计纳米线的透明阵列,以充当Fe_2O_3的导电衬底。为了帮助理解Fe_2O_3组分的电荷传输特性,我们报告了瞬态光电流测量结果,该测量结果是通过在具有半透明银肖特基顶部触点的导电玻璃上通过过滤电弧沉积法沉积的Fe_2O_3吸收薄膜上进行的。使用紫外线激光脉冲在表面附近生成电荷载流子,并测量由此产生的电流瞬变。还已经开发了这种电荷传输的模拟。观察到的瞬态信号与施加的偏压无关,这与薄膜完全耗尽是一致的。测量结果还表明,重组可能在确定瞬态形状中起重要作用。需要进行进一步的调查以自信地预测出动量。

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