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Visible light switchable bR/TiO2 nanostructured photoanodes for bio-inspired solar energy conversion

机译:可见光可切换Br / TiO2纳米结构光电桥用于生物启发太阳能转换

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摘要

Today, regarding the limitation and environmental side effects of fossil fuel resources, solar hydrogen production is one of the main interests in the energy research area. The development of visible light sensitized semiconductors based on non-toxic components, low cost and available bio- species is an ongoing approach for H-2 generation based on water splitting reactions. Here, two different morphologies of TiO2 photoanodes, nanoparticulated and nanotubular, have been modified with simply extracted bacteriorhodopsin (bR) without any linker. Achieving a significant enhancement in photoconversion efficiency of TiO2 photoanodes, eta% was increased from 2.9 to 16.5 by bR addition to the TiO2 nanoparticulate electrode, whereas it increased from 0.5 to 1.9 for the nanotubular system. This result indicated that because of the large size of the extracted purple membranes, nanoparticles showed a greater number of explosion sites for bR attachment, and they were more efficient than the nanotubes. Moreover, comparing these values with the ones reported for bR/TiO2 photoanodes before, the simple proposed decoration method displayed a remarkable improvement in the visible response of the TiO2 based photoanodes. This approach can be beneficial to the area of solar water splitting, photoelectrochemical sensing, and any other photoresponsive systems.
机译:今天,关于化石燃料资源的限制和环境副作用,太阳能氢生产是能源研究区的主要兴趣之一。基于无毒成分,低成本和可用生物物种的可见光致敏半导体的开发是基于水分裂反应的H-2代的正在进行的方法。这里,通过简单地提取的Bacteriorhodopsin(Br)改变了两种不同形态的TiO2光胰岛,纳米颗粒和纳米管的形态。在TiO2纳米颗粒电极的添加中,将Eta%从2.9〜16.5增加到TiO2纳米颗粒电极的2.9〜16.5的显着提高..它为纳米管系统增加0.5至1.9。该结果表明,由于提取的紫膜尺寸的大尺寸,纳米颗粒显示了更多的Br附着的爆炸部位,并且它们比纳米管更有效。此外,将这些值与以BR / TiO2光电码报告的那些相比,简单的提出的装饰方法在基于TiO2的光阳极的可见响应中显示出显着的改进。这种方法可以有利于太阳能水分裂,光电化学感测和任何其他光反应系统的面积。

著录项

  • 来源
    《RSC Advances》 |2015年第24期|共5页
  • 作者单位

    Sharif Univ Technol Dept Phys Tehran Iran;

    Tarbiat Modares Univ Dept Nanobiotechnol Tehran Iran;

    Tarbiat Modares Univ Dept Phys Tehran Iran;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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