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Highly Transparent Dual-Sensitized Titanium Dioxide Nanotube Arrays for Spontaneous Solar Water Splitting Tandem Configuration

机译:高度透明的双敏化钛白粉纳米管阵列,用于自发的太阳能分流串联配置

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摘要

Vertically aligned one-dimensional (1D) titanium dioxide (TiO2) arrays on transparent conducting oxide (TCO) substrates, which can act as host electron transport materials for low bandgap materials, were synthesized via a hydrothermal reaction combined with a controlled chemical etching process. By controlling the chemical etching conditions, we can maximize the light transmission properties of the 1D TiO2 arrays, which is beneficial for the front electrode in photoelectrochemical (PEG) tandem configurations. As a result, dual sensitization to form 1D TiO2@ CdS@CdSe (CdS and CdSe coated 1D TiO2) results in excellent photocurrent density, as well as transparency, and the resulting material is able to pass unabsorbed photons through the front electrode into the rear bias solar cell. Owing to the improved light transmission in combination with the increased specific surface area of the obtained 1D TiO2 arrays from the controlled etching process, a high-efficiency PEG tandem device with similar to 2.1% was successfully fabricated for unassisted hydrogen evolution. Efficient PEG tandem device was fabricated for unassisted solar hydrogen generation using highly transparent composite electrode composed of dual sensitization to form 1D TiO2@CdS@CdSe.
机译:通过水热反应结合可控的化学刻蚀工艺,合成了透明导电氧化物(TCO)衬底上的垂直排列的一维(1D)二氧化钛(TiO2)阵列,该阵列可用作低带隙材料的主体电子传输材料。通过控制化学蚀刻条件,我们可以使一维TiO2阵列的光传输性能最大化,这对于光电化学(PEG)串联配置中的前电极非常有利。结果,双重敏化形成1D TiO2 @ CdS @ CdSe(CdS和CdSe涂层的1D TiO2)导致优异的光电流密度和透明性,并且所得材料能够将未吸收的光子通过前电极传递到后电极偏置太阳能电池。由于改进的光透射率以及通过受控蚀刻工艺获得的一维TiO2阵列增加的比表面积,成功制造了一种无辅助氢气析出的高效PEG串联装置,其效率约为2.1%。使用由双重敏化作用形成1D TiO2 @ CdS @ CdSe的高度透明的复合电极,制造了高效的PEG串联装置,用于无辅助太阳能生成。

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