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TiO2/(CdS, CdSe, CdSeS) Nanorod Heterostructures and Photoelectrochemical Properties

机译:TiO2 /(CdS,CdSe,CdSeS)纳米棒的异质结构和光电化学性能

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摘要

In this work, nanorods of CdS, CdSe, and CdSeS are deposited by chemical vapor deposition on TiO2 nanorod arrays, and the photoelectrochemical (PEC) performance of the heterostructures is studied comprehensively. It is found that nanorods-shaped CdS are superior to nanoparticles as the photosensitizer. The difference in the photosensitizing effect to TiO2 nanorods among CdS, CdSe, and CdSeS alloy nanorods is studied using optical and electrochemical techniques. The energy levels of these heterostructure photoelectrodes are constructed based on X-ray photoelectron spectroscopy (XPS) and diffused reflectance spectra measure-ments. The current-time profile with chopped light condition, in combination with time-resolved photoluminescence spectroscopy, reveals that the TiO2/CdS electrode has the lowest carrier recombination rate, highest electron injection efficiency, and highest chemical stability. Nevertheless, in terms of the overall PEC performance (photocurrent level and stability), we propose the TiO2/CdSSe electrode is most favorable.
机译:在这项工作中,CdS,CdSe和CdSeS纳米棒通过化学气相沉积法沉积在TiO2纳米棒阵列上,并全面研究了异质结构的光电化学性能。发现纳米棒状CdS作为光敏剂优于纳米颗粒。使用光学和电化学技术研究了CdS,CdSe和CdSeS合金纳米棒之间对TiO2纳米棒的光敏作用的差异。这些异质结构光电极的能级是基于X射线光电子能谱(XPS)和漫反射光谱测量法构造的。斩波条件下的电流-时间曲线与时间分辨的光致发光光谱法相结合,表明TiO2 / CdS电极具有最低的载流子复合率,最高的电子注入效率和最高的化学稳定性。然而,就整体PEC性能(光电流水平和稳定性)而言,我们建议TiO2 / CdSSe电极是最有利的。

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