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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Ultrathin Silicon Oxide Film-Induced Enhancement of Charge Separation and Transport of Nanostructured Titanium(IV) Oxide Photoelectrode
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Ultrathin Silicon Oxide Film-Induced Enhancement of Charge Separation and Transport of Nanostructured Titanium(IV) Oxide Photoelectrode

机译:超薄氧化硅膜诱导的电荷分离增强和纳米结构钛(IV)氧化物光电极的运输

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摘要

The development of nanostructured semiconductor electrodes represented by a mesoporous TiO2 nanocrystalline (mp-TiO2) film is currently bringing great progresses in photoelectrochemical (PEC) devices for solar-to-electricity and solar-to-chemical conversion. Two serious losses can occur in PEC devices: 1) recombination between the conduction band (CB) electrons and valence band (VB) holes in the bulk and at the surface and 2) back reaction or electron trapping by oxidant in the electrolyte solution during transport to the electron-collecting electrode. Thus, the major challenge in common with the nanostructured semiconductor photoanodes is to achieve efficient charge separation and electron transport. In this study, an ultrathin SiOx layer was formed on both the external and the internal surface of mp-TiO2 using an original chemisorption-calcination technique employing 1,3,5,7-tetramethyltetrasiloxane as a starting material. The SiOx surface modification of the mp-TiO2 photoanode drastically prolongs the mean lifetime of CB-electrons in TiO2 because of enhanced charge separation and electron transport by the negative charge applied in aqueous electrolyte solution. We have demonstrated that the performance of a one-compartment H2O2-photofuel cell using mp-TiO2 as the photoanode is greatly boosted by the surface modification with the SiOx layer. We anticipate that this methodology is widely applicable to nanostructured metal oxide semiconductor electrodes, contributing to the improvement in the performance of PEC devices.
机译:由介孔TiO2纳米晶(MP-TiO2)膜表示的纳米结构半导体电极的发展目前在光电化学(PEC)装置中具有巨大的进展,用于太阳能电力和太阳能 - 化学转化。在PEC器件中可能发生两种严重损失:1)在散装中的导通带(CB)电子和价带(VB)孔(VB)孔和2)在运输过程中通过电解质溶液中的氧化剂进行反应或电子捕获到电子收集电极。因此,与纳米结构半导体光阳极共同的主要挑战是实现有效的电荷分离和电子传输。在该研究中,使用使用1,3,5,7-四甲基二硅氧烷作为原料的原始化学吸附煅烧技术在MP-TiO2的外部和内表面上形成超薄SiOx层。由于在水性电解质溶液中施加的负电荷提高了电荷分离和电子传输,MP-TiO2光电仪的SiOx表面改性大大延长了TiO2中Cb型电子的平均寿命。我们已经证明,使用MP-TiO2作为光电码的单室H2O2- Photofuel电池的性能极大地通过用SiOx层的表面改性来提高。我们预期该方法广泛应用于纳米结构金属氧化物半导体电极,有助于改善PEC器件的性能。

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