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首页> 外文期刊>RSC Advances >Photoelectrochemical properties of nanocrystalline ZnS discrete versus continuous coating of ZnO nanorods prepared by electrodeposition
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Photoelectrochemical properties of nanocrystalline ZnS discrete versus continuous coating of ZnO nanorods prepared by electrodeposition

机译:纳米晶体ZnS离散与电沉积制备的ZnO纳米棒连续涂层的光电化学性质

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摘要

We developed nanostructured photoanodes for photoelectrochemical (PEC) water splitting and hydrogen generation. They are based on ZnO nanorods electrodeposited on conductive ITO glass on which ZnO@ZnS heterojunctions were formed using two different approaches. In the first case, the ZnO nanorods were sulfided by a prolonged contact with Na _(2) S aqueous solution, while in the second one, they were immersed in an alcoholic solution of 2 nm sized polyol-made ZnS quantum dots (QDs). Transmission electron microscopy showed that a continuous thin layer of ZnS is formed around ZnO leading to a core@shell structure in the first case, while discrete QD aggregates were grafted at the surface of these rods leading to a kind of tologyin, in the second case. PEC properties of both composite films were measured, using a home-made electrochemical cell and illuminating the anodes with a Xenon lamp. A net enhancement of the photocurrent was observed when the ZnS coating was processed, suggesting a low carrier recombination rate, a higher efficiency toward water oxidation, and then electron transfer to the used cathode (Pt wire) for H ~(+) reduction and H _(2) generation. Interestingly, the performances of the two composite films were found to be comparable, suggesting that a discrete coating of the ZnO nanorods by a small amount of preformed ZnS QDs is enough to improve their properties for the desired application.
机译:我们开发了用于光电化学(PEC)水分裂和氢气产生的纳米结构曝光。它们基于电沉积在导电ITO玻璃上电沉积的ZnO纳米棒,其中使用两种不同的方法形成ZnO ZnS杂交型。在第一种情况下,ZnO纳米棒通过与Na _(2)S水溶液的延长接触而硫化,而在第二个中,将它们浸入2nm大小的多元醇制造ZnS量子点(QDS)的醇溶液中。透射电子显微镜表明,在第一种情况下,ZnO周围形成连续薄层,其在ZnO周围形成核心壳结构,而在第二种情况下,在这些杆的表面接枝离散的QD聚集体,导致了导致一种Talicein的表面,在第二种情况下。 。使用自制电化学电池测量两种复合膜的PEC性质,并用氙灯照射阳极。当加工ZnS涂层时,观察到光电流的净增强,表明低载体复合速率,较高的水氧化效率,然后电子转移到用于H〜(+)的使用的阴极(PT线)和H. _(2)代。有趣的是,发现两种复合膜的性能是可比的,表明通过少量预成形的ZnS QDS的ZnO纳米棒的离散涂层足以改善其所需应用的性质。

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