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首页> 外文期刊>Electrochimica Acta >Enhanced visible light photocurrent generation at surface-modified TiO{sub}2 nanotubes
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Enhanced visible light photocurrent generation at surface-modified TiO{sub}2 nanotubes

机译:在表面改性的TiO {sub} 2纳米管上增强的可见光光电流产生

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摘要

Photoelectrodes consisting of TiO{sub}2 nanotube layers with different thicknesses (0.5 μm, 1.7 μm, 3 μm, 6 μm, 9 μm, and 18 μm) were prepared by anodization of titanium substrates and subsequent surface modification by a heat treatment at 400 ℃ in the presence of urea pyrolysis products. In contrast to unmodified TiO{sub}2 nanotubes, the modified photoelectrodes exhibit photocurrents under visible light irradiation down to 750 nm. Photocurrent transients indicate enhanced recombination unless a suitable hole-scavenger, like iodide, is present since the photogenerated holes do not oxidize water efficiently. In the visible light the photoconversion efficiency increases significantly with nanotube length. The maximum incident photon-to-current efficiency (IPCE) was observed for tubes with the length of 6-9 μm (IPCE ~4.5% and 1.4% at 450 nm and 550 nm, respectively) and the photocurrent enhancement with increasing tube length is found to be stronger at longer irradiations wavelengths.
机译:通过钛基板的阳极氧化和随后在400℃的热处理对表面进行改性,制备了由具有不同厚度(0.5μm,1.7μm,3μm,6μm,9μm和18μm)的TiO {sub} 2纳米管层组成的光电极。 ℃下存在尿素热解产物。与未改性的TiO {sub} 2纳米管相反,改性的光电极在可见光照射下至750 nm处显示光电流。除非存在合适的空穴清除剂(如碘化物),否则光电流瞬变表明复合作用会增强,因为光生空穴不能有效地氧化水。在可见光下,光转换效率随着纳米管长度的增加而显着增加。长度为6-9μm的灯管(IPCE分别在450 nm和550 nm处的IPCE〜4.5%和1.4%)观察到最大入射光子电流效率(IPCE),并且随着灯管长度的增加,光电流增强为发现在更长的照射波长下更强。

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