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Abnormal Cathodic Photocurrent Generated on an n‐Type FeOOH Nanorod‐Array Photoelectrode

机译:在N型FeOOH纳米棒阵列光电极上产生的异常阴极光电流

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摘要

A simple, wet-chemical method for the synthesis of an FeOOH nanorod-array photoelectrode on fluorine-doped tin oxide (FTO) glass is reported. Nanorods of diameter about 35nm and length about 300nm have been vertically grown on an FTO substrate. Upon calcination, the FeOOH phase could be easily converted to a hematite structure while maintaining the shape of the nanorod array. An interesting abnormal cathodic photocurrent is generated on the FeOOH nanorod-array photoelectrode under illumination, which is totally different from that obtained on a calcined hematite photoelectrode under the same experimental conditions. The cathodic photocurrent density generated on the FeOOH photoelectrode can also be tuned by applying an electrochemical anodic or cathodic treatment. Detailed analysis has revealed that higher valence state Fe species in the FeOOH photoelectrode play an important role in sacrificing the photoexcited electrons for generation of the cathodic photocurrent. Comparison between the FeOOH and hematite photoelectrodes allows for a better understanding of the interplay between crystal structure, surface reactions, and photocurrent. The findings on this new abnormal phenomenon could also provide guidance for the design of new types of semiconducting photoelectrochemical devices.
机译:报道了一种简单,湿化学方法,用于合成氟掺杂氧化锡(FTO)玻璃上的FeOOH纳米蚀阵列光电极。直径约为35nm和长度约300nm的纳米棒在FTO基板上垂直生长。在煅烧时,在保持纳米棒阵列的形状的同时,可以容易地将FeOOH相容易转换为赤铁矿结构。在照明的FeOOH纳米棒阵列光电极上产生有趣的异常阴极光电流,其与在相同的实验条件下的煅烧赤铁矿光电电极上完全不同。在FeOOH光电极上产生的阴极光电流密度也可以通过施加电化学阳极或阴极处理来调节。详细分析表明,FeOOH光电极中的更高价态Fe物种在牺牲用于产生阴极光电流的光透射电子中起着重要作用。 FeOOH和赤铁矿光电区之间的比较允许更好地了解晶体结构,表面反应和光电流之间的相互作用。这种新异常现象的调查结果还可以为新型半导体光电化学器件的设计提供指导。

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