AbstractReduced graphene oxide protected Cu2O/Cu foil (rGO/Cu2O/Cu foil) ph'/> Fabrication, characterization and photoelectrochemical properties of cuprous oxide-reduced graphene oxide photocatalysts for hydrogen generation
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Fabrication, characterization and photoelectrochemical properties of cuprous oxide-reduced graphene oxide photocatalysts for hydrogen generation

机译:氧化亚铜还原的氧化石墨烯光催化剂的制备,表征和光电化学性能

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摘要

AbstractReduced graphene oxide protected Cu2O/Cu foil (rGO/Cu2O/Cu foil) photocathodes have been synthesized via a two-step strategy. (NH4)2S2O8was first used to oxidize Cu foil and prepare Cu(OH)2nanostructures/Cu foil. In the second step, graphene oxide (GO) solution and the prepared Cu(OH)2/Cu foil sample were hydrothermally reacted in a Teflon lined stainless steel autoclave for different periods of time at 120 °C, followed by calcination at 450 °C under N2atmosphere for 3 h. The effect of modification of rGO on the photoelectrochemical activity of different rGO/Cu2O/Cu foil samples has been studied by FESEM, XRD, FTIR, Raman spectroscopy and UV–Vis diffuse reflectance spectroscopy. Continuous and transparent layer of GO sheets are formed on the surface of Cu(OH)2nanostructures/Cu foil, according to FESEM results. The photoelectrochemical properties of the prepared samples in the dark and under illumination conditions were investigated using linear sweep voltammetry and chronoamperometry techniques. The rGO/Cu2O/Cu foil photocathodes exhibit enhanced photocurrent density under illumination (85 mW/cm2) in comparison with the bare Cu2O/Cu foil photocathode. The improved separation efficiency of photogenerated charge carriers may be mainly accounted for this enhanced photoelectrochemical performance. A low photostability of 12.5% of the initial photocurrent density was observed for the bare Cu2O/Cu foil photocathode after 1000s of illumination whereas this value reached to almost 77% after modification of rGO. The new rGO/Cu2O/Cu foil nanocomposite prepared in this study is believed to be a promising photocathode material in photoelectrochemical cells for efficient water splitting.
机译: 摘要 还原的氧化石墨烯保护的Cu 2 O / Cu箔(rGO / Cu通过两个步骤合成了 2 O / Cu箔)光电阴极。首先使用(NH 4 2 S 2 O 8 氧化铜箔并制备Cu(OH) 2 纳米结构/铜箔。在第二步中,将氧化石墨烯(GO)溶液和制备的Cu(OH) 2 / Cu箔样品在衬有特氟隆的不锈钢高压釜中于120°C水热反应不同的时间,然后在N 2 气氛下于450°C煅烧3小时。通过FESEM,XRD,FTIR,拉曼光谱和UV-Vis漫反射光谱研究了rGO修饰对不同rGO / Cu 2 O / Cu箔样品的光电化学活性的影响。根据FESEM结果,在Cu(OH) 2 纳米结构/ Cu箔的表面上形成了连续透明的GO片层。使用线性扫描伏安法和计时电流法研究了制备的样品在黑暗和光照条件下的光电化学性质。与裸Cu 2 2 O / Cu箔光电阴极在光照下(85mW / cm 2 )表现出增强的光电流密度> O / Cu箔光电阴极。光生电荷载流子的改进的分离效率可以主要归因于这种增强的光电化学性能。裸露的Cu 2 O / Cu箔光阴极在照射1000s后观察到的初始光电流密度的低12.5%,而在rGO修饰后该值达到近77%。这项研究中制备的新型rGO / Cu 2 O / Cu箔纳米复合材料被认为是光电化学电池中用于有效水分解的有前途的光阴极材料。

著录项

  • 来源
    《Journal of materials science》 |2018年第5期|4136-4146|共11页
  • 作者单位

    Department of Chemistry, Isfahan University of Technology;

    Department of Chemistry, Isfahan University of Technology;

    Department of Chemistry, Isfahan University of Technology;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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