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Novel layer-by-layer assembly of rGO-hybridised ZnO sandwich thin films for the improvement of photo-catalysed hydrogen production
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作者 Swe Jyan Teh Chin Wei Lai Sharifah Bee Abd.Hamid 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2016年第2期334-342,共9页
Metal oxide semiconductor materials such as ZnO have tremendous potential as light absorbers for photocatalysed electrodes in the electrochemical reduction of water. Promoters such as rGO have been added to reduce the... Metal oxide semiconductor materials such as ZnO have tremendous potential as light absorbers for photocatalysed electrodes in the electrochemical reduction of water. Promoters such as rGO have been added to reduce the recombination losses of charge carriers and improve its photoelectrochemical activity. In this study, the effect of layer ordering on the charge transfer properties of rGO-hybridised ZnO sandwich thin films for the photo-catalysed electrochemical reduction of water was investigated. rGO-hybridised ZnO sandwich thin films were prepared via a facile electrode position technique using a layer-by-layer approach. The thin films were analysed using FESEM, XRD, Raman, PL, UV–vis, EIS and CV techniques to investigate its morphological, optical and electrochemical properties. The FESEM images show the formation of distinct layers of rGO and ZnO nanorods/flakes via the layer-by-layer method. XRD confirmed the wurtzite structure of ZnO. PL spectroscopy revealed a reduction of photoemission intensity in the visible region(580 nm) when rGO was incorporated into the ZnO thin film. Among the six thin films prepared, ZnO/rGO showed superior performance compared to the other thin films(0.964 m A/cm) due to the presence of graphene edges which participate as heterogenous electrocatalysts in the photocatalysed electrolysis of water. rGO also acts as electron acceptor, forming an n-p heterojunction which improves the activity of ZnO to oxidise water molecules to O2. EIS revealed that the application of rGO as back contact(rGO/ZnO, rGO/ZnO/rGO) reduces the charge transfer resistance of a semiconductor thin film. Alternatively, rGO as front contact(ZnO/rGO, rGO/ZnO/rGO) improves the photo-catalysed electrolysis of water through the participation of the rGO edges in the chemical activation of water. The findings from this study indicate that the layer ordering significantly affects the thin film's electrostatic properties and this understanding can be further advantageous for tunable applications. 展开更多
关键词 heterojunction layer-by-layer assembly zno thin film photocatalysis
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Z型异质结CdS/ZnO薄膜的光催化性能
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作者 张琪 孙丽霞 +2 位作者 孙建华 韦旭 廖丹葵 《广西大学学报(自然科学版)》 CAS 北大核心 2023年第2期414-424,共11页
针对ZnO的光吸收范围窄和光生载流子分离率低,阻碍其在光催化领域应用的问题,本文采用电沉积法、水热法制备具有良好光吸收能力的Z型异质结CdS/ZnO薄膜(CZ)。以罗丹明B作为降解目标,评估Z型异质结CZ的光催化降解性能。研究结果表明:CZ... 针对ZnO的光吸收范围窄和光生载流子分离率低,阻碍其在光催化领域应用的问题,本文采用电沉积法、水热法制备具有良好光吸收能力的Z型异质结CdS/ZnO薄膜(CZ)。以罗丹明B作为降解目标,评估Z型异质结CZ的光催化降解性能。研究结果表明:CZ表现出优于ZnO或CdS的光催化降解性能,其中,氯化镉和硝酸锌物质的量比为1∶1制备的CZ具有最佳光催化降解性能,120 min内的光催化降解效率为69.52%,分别是ZnO和CdS的2.5、1.5倍。CdS对CZ光吸收能力的提高起着至关重要的作用。Z型异质结的形成有效地抑制了光生载流子的复合,从而增强CZ的光催化降解性能。此外,CZ在3次循环中表现出了良好的稳定性和便捷的可回收性。超氧自由基·O_(2)和羟基自由基·OH在光催化降解过程中起主要作用。 展开更多
关键词 硫化镉/氧化锌 异质结 薄膜 光催化 罗丹明B
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