(Invited) CdS/Ti-Si-O Composite Photoanode for Photoelectrochemical Hydrogen Generation

Weilong Feng, Dongyan Ding, Zhi Chen
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Abstract

Advancements in clean energy drive socio-economic development and foster a sustainable future by restructuring energy systems and promoting low-carbon development. In this paper, we presented a comprehensive investigation on the design and performance characterization of CdS/Ti-Si-O composite photoanodes for photoelectrochemical (PEC) hydrogen generation. Silicon-doped TiO2 nanotube arrays were fabricated through anodization of Ti-5Si alloy, followed by the deposition of CdS using the SILAR (successive ionic layer adsorption and reaction) process, resulting in nanostructured Ti-Si-O photoanodes modified with CdS. The composite photoanodes were characterized in terms of their composition, microstructure, optical properties and photoelectrochemical hydrogen production performance. The composite photoanodes revealed a notable enhancement in PEC hydrogen generation properties with a photocurrent density of 7.86 mA/cm2,which was 19.15 times and 9.59 times to those of the undoped TiO2 photoanode and Ti-Si-O photoanode, respectively. The Si-doping mechanism of the photoanodes was elucidated through Density Functional Theory (DFT) calculations. The synergistic combination of Si-doping and CdS modification represents a novel and promising approach for the design of efficient nanostructured photoanodes.
(特邀)用于光电化学制氢的 CdS/Ti-Si-O 复合光阳极
清洁能源的进步推动了社会经济的发展,并通过重构能源系统和促进低碳发展,打造了一个可持续发展的未来。本文全面研究了用于光电化学(PEC)制氢的 CdS/Ti-Si-O 复合光阳极的设计和性能表征。通过对 Ti-5Si 合金进行阳极氧化处理,制备出掺硅 TiO2 纳米管阵列,然后利用 SILAR(连续离子层吸附和反应)工艺沉积 CdS,最终制备出用 CdS 修饰的纳米结构 Ti-Si-O 光阳极。研究人员对复合光阳极的组成、微观结构、光学特性和光电化学制氢性能进行了表征。复合光阳极显著提高了光致化学产氢性能,其光电流密度为7.86 mA/cm2,分别是未掺杂TiO2光阳极和Ti-Si-O光阳极的19.15倍和9.59倍。密度泛函理论(DFT)计算阐明了光阳极的Si掺杂机理。Si掺杂与CdS修饰的协同结合为设计高效纳米结构光阳极提供了一种新颖而有前景的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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