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首页> 外文期刊>Solar Energy >Reduced graphene oxide as a solid-state mediator in TiO_2/In_(0.5)WO_3 S-scheme photocatalyst for hydrogen production
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Reduced graphene oxide as a solid-state mediator in TiO_2/In_(0.5)WO_3 S-scheme photocatalyst for hydrogen production

机译:将石墨烯氧化物作为固态介体在TiO_2 / IN_(0.5)WO_3 S-方案光催化剂中,用于氢气产生

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摘要

Photocatalytic H-2 evolution has been proven to be one of the promising methods for tackling global energy and environmental issues. In this work, rGO supported TiO2/In0.5WO3 S-scheme heterojunction photocatalyst was prepared by using the hydrothermal and wet impregnation methods. The crystallinity and morphology of synthesized photocatalysts were ascertained by XRD, FESEM, and TEM. The results showed high crystallinity and distribution of TiO2/In0.5WO3 on rGO sheets. The photocatalytic activity of synthesized photocatalyst was evaluated towards photocatalytic H-2 production. It was noted that compared to bare TiO2 (24.15 +/- 1.8 mu mol/h/ g), TiO2/In0.5WO3 (132.6 +/- 5.1 mu mol/h/g) and rGO supported TiO2/In0.5WO3 (309.98 +/- 11.4 mu mol/h/g) photocatalysts showed 5 and 12 folds enhanced photocatalytic H-2 production activity. Further, 5.2, 11.3 and 15.6% AQE was achieved at 365 nm for TiO2, TiO2/In0.5WO3 and rGO supported TiO2/In0.5WO3. This was mainly attributed to improved light absorption by TiO2/In0.5WO3 and rapid charge carrier separation characteristics of rGO as revealed by UV-vis DRS, Photoluminescence spectroscopy and Photocurrent studies. Based on photoelectrochemical results, a direct S-scheme heterojunction charge transfer mechanism was proposed to explain the significantly enhanced photocatalytic performance of rGO supported TiO2/In0.5WO3 photocatalyst. This work stipulates new comprehensions into the construction of S-scheme heterostructure through rGO as a solid-state mediator.
机译:光催化H-2进化已被证明是解决全球能源和环境问题的有希望的方法之一。在这项工作中,通过使用水热和湿浸渍方法制备RGO支持TiO2 / In0.5wO3 S-SchemeS异质结光催化剂。通过XRD,FESEM和TEM确定合成光催化剂的结晶度和形态。结果表明,RGO板上的TiO2 / In0.5wO3的高结晶度和分布。评估了合成光催化剂的光催化活性朝向光催化H-2生产。有人指出,与裸滴二氧化钛(24.15 +/- 1.8 mm mol / h / g),TiO2 / In0.5wO3(132.6 +/-5.1μmol/ h / h / g)和rgo支持TiO2 / In0.5wo3(309.98 +/-11.4μmol/ h / g)光催化剂显示5和12折增强的光催化H-2生产活动。此外,5.2,11.3和15.6%AQE在365nm的TiO 2,TiO 2 / In0.5wO3和Rgo支持的TiO 2 / In0.5wO3中获得。这主要归因于通过UV-VIS DRS,光致发光光谱和光电流研究所揭示的RGO的抗光吸收和RGO的快速充电载体分离特性。基于光电化学结果,提出了一种直接的S-Schement异质结电荷转移机理,解释了RGO支持的TiO2 / In0.5wO3光催化剂的显着增强的光催化性能。这项工作规定了通过RGO作为固态调解器将S-School异质结构构建的新推动。

著录项

  • 来源
    《Solar Energy》 |2021年第1期|260-270|共11页
  • 作者单位

    SRM Inst Sci & Technol SRM Res Inst Chennai 603203 Tamil Nadu India|SRM Inst Sci & Technol Dept Phys & Nanotechnol Chennai 603203 Tamil Nadu India;

    SRM Inst Sci & Technol SRM Res Inst Chennai 603203 Tamil Nadu India|SRM Inst Sci & Technol Dept Phys & Nanotechnol Chennai 603203 Tamil Nadu India;

    SRM Inst Sci & Technol Dept Phys & Nanotechnol Chennai 603203 Tamil Nadu India;

    SRM Inst Sci & Technol SRM Res Inst Chennai 603203 Tamil Nadu India;

  • 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
  • 关键词

    Solid-state mediator; Type-II heterojunction; TiO2/In0.5WO3; S-scheme photocatalyst;

    机译:固态介体;II型异质结;TiO2 / IN0.5WO3;S-SchemeS光催化剂;

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