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Hyperbranched TiO2-CdS nano-heterostructures for highly efficient photoelectrochemical photoanodes

机译:高效光电化学光桥的超支化TiO2-CD纳米异质结构

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摘要

Quasi-1D-hyperbranched TiO2 nanostructures are grown via pulsed laser deposition and sensitized with thin layers of CdS to act as a highly efficient photoelectrochemical photoanode. The device properties are systematically investigated by optimizing the height of TiO2 scaffold structure and thickness of the CdS sensitizing layer, achieving photocurrent values up to 6.6 mA cm(-2) and reaching saturation with applied biases as low as 0.35 V-RHE. The high internal conversion efficiency of these devices is to be found in the efficient charge generation and injection of the thin CdS photoactive film and in the enhanced charge transport properties of the hyperbranched TiO2 scaffold. Hence, the proposed device represents a promising architecture for heterostructures capable of achieving high solar-to-hydrogen efficiency.
机译:通过脉冲激光沉积生长准1D-超支化的TiO2纳米结构,并用薄层CD致敏,以充当高效的光电化学光电码。 通过优化TiO2支架结构的高度和CDS致敏层的厚度,通过施加偏置的光电流值,通过施加的偏置达到0.35V-rhe的饱和度,通过优化TiO 2支架结构和厚度来系统地研究了装置性质。 这些器件的高内部转换效率将在高效电荷产生和注入薄CDS光活性膜中以及超支化TiO2支架的增强电荷传输性能中找到。 因此,该装置代表了能够实现高太阳能氢效率的异质结构的有希望的架构。

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