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用于高效光催化太阳能水分解的溶液法制备氧化铜(CuO)薄膜

Solution-Processed Synthesis of Copper Oxide (Cu O) Thin Films for Efficient Photocatalytic Solar Water Splitting.

作者信息

Aktar Asma, Ahmmed Shamim, Hossain Jaker, Ismail Abu Bakar Md

机构信息

Solar Energy Laboratory, Department of Electrical and Electronic Engineering, University of Rajshahi, Rajshahi 6205, Bangladesh.

出版信息

ACS Omega. 2020 Sep 24;5(39):25125-25134. doi: 10.1021/acsomega.0c02754. eCollection 2020 Oct 6.

Abstract

This article reports a solution-processed synthesis of copper oxide (Cu O) to be used as a potential photocathode for solar hydrogen production in the solar water-splitting system. Cu O thin films were synthesized through the reduction of copper iodide (CuI) thin films by sodium hydroxide (NaOH), which were deposited by the spin coating method from CuI solution in a polar aprotic solvent (acetonitrile). The phase and crystalline quality of the synthesized Cu O thin films prepared at various annealing temperatures were investigated using various techniques. The X-ray diffraction and energy dispersive X-ray spectroscopy studies confirm the presence of CuO, CuO/CuO mixed phase, and pure CuO phase at annealing temperatures of 250, 300, and 350 °C, respectively. It is revealed from the experimental findings that the synthesized Cu O thin films with an annealing temperature of 350 °C possess the highest crystallinity, smooth surface morphology, and higher carrier density. The highest photocurrent density of -19.12 mA/cm at -1 V versus RHE was achieved in the photoelectrochemical solar hydrogen production system with the use of the Cu O photocathode annealed at a temperature of 350 °C. Therefore, it can be concluded that Cu O synthesized by the spin coating method through the acetonitrile solvent route can be used as an efficient photocathode in the solar water-splitting system.

摘要

本文报道了一种通过溶液法合成氧化铜(Cu₂O)的方法,该氧化铜可作为太阳能水分解系统中太阳能制氢的潜在光阴极。通过用氢氧化钠(NaOH)还原碘化铜(CuI)薄膜来合成Cu₂O薄膜,CuI薄膜是通过旋涂法从极性非质子溶剂(乙腈)中的CuI溶液沉积而成的。使用各种技术研究了在不同退火温度下制备的合成Cu₂O薄膜的相和晶体质量。X射线衍射和能量色散X射线光谱研究分别证实了在250、300和350℃退火温度下存在Cu₂O、Cu₂O/CuO混合相和纯CuO相。实验结果表明,退火温度为350℃的合成Cu₂O薄膜具有最高的结晶度、光滑的表面形貌和更高的载流子密度。在使用350℃退火的Cu₂O光阴极的光电化学太阳能制氢系统中,相对于可逆氢电极(RHE)在-1V时实现了-19.12 mA/cm²的最高光电流密度。因此,可以得出结论,通过乙腈溶剂路线通过旋涂法合成的Cu₂O可作为太阳能水分解系统中的高效光阴极。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7023/7542592/36ad2f1bf4f1/ao0c02754_0002.jpg

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