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首页> 外文期刊>Energy & environmental science >A monolithic device for solar water splitting based on series interconnected thin film absorbers reaching over 10% solar-to-hydrogen efficiency
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A monolithic device for solar water splitting based on series interconnected thin film absorbers reaching over 10% solar-to-hydrogen efficiency

机译:基于串联互连的薄膜吸收器的单片太阳能水分离装置,太阳能到氢的效率超过10%

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摘要

Efficient production of hydrogen from solar energy is anticipated to be an important component in a future sustainable post-carbon energy system. Here we demonstrate that series interconnected absorbers in a PV-electrolysis configuration based on the compound semiconductor CIGS, Culn_xGa_(1-x)Se_2, are a highly interesting concept for solar water splitting applications. The band gap energy of CIGS can be adjusted to a value close to optimum for efficient absorption of the solar spectrum, but is too low to drive overall water splitting. Therefore we connect three cells in series, into a monolithic device, which provides sufficient driving force for the full reaction. Integrated with a catalyst this forms a stable PV/photo-electrochemical device, which when immersed in water reaches over 10% solar-to-hydrogen efficiency for unassisted water splitting. The results show that series interconnected device concepts, which enable use of a substantial part of the solar spectrum, provide a simple route towards highly efficient water splitting and could be used also for other solar absorbers with similar electro-optical properties. We discuss how the efficiency could be increased for this particular device, as well as the general applicability of the concepts used in this work. We also briefly discuss advantages and disadvantages of photo-electrochemical cells in relation to PV-electrolysis with respect to our results.
机译:预期从太阳能有效生产氢将成为未来可持续的后碳能源系统的重要组成部分。在这里,我们证明了基于化合物半导体CIGS Culn_xGa_(1-x)Se_2的PV电解配置中的串联互连吸收器是太阳能分水应用中非常有趣的概念。可以将CIGS的带隙能量调整到接近于最佳值的水平,以有效吸收太阳光谱,但又太低而无法推动总的水分解。因此,我们将三个电池串联连接到一个整体装置中,从而为整个反应提供了足够的驱动力。与催化剂集成后,可形成稳定的PV /光电化学装置,当将其浸入水中时,可实现超过10%的太阳能转化效率,可进行无辅助的水分解。结果表明,串联互连的设备概念可以使用大部分太阳光谱,为实现高效水分解提供了一条简单的途径,也可以用于具有类似光电特性的其他太阳能吸收器。我们将讨论如何针对这种特定设备提高效率,以及本工作中使用的概念的一般适用性。关于我们的结果,我们还简要讨论了与PV电解有关的光电化学电池的优缺点。

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  • 来源
    《Energy & environmental science》 |2013年第12期|3676-3683|共8页
  • 作者单位

    Department of Chemistry - Angstrom Laboratory, Uppsala University, Box 538, 75121 Uppsala, Sweden;

    Department of Engineering Sciences, Solid State Electronics division, Uppsala University, Box 534, 75121 Uppsala, Sweden;

    Department of Chemistry - Angstrom Laboratory, Uppsala University, Box 538, 75121 Uppsala, Sweden;

    Department of Engineering Sciences, Solid State Electronics division, Uppsala University, Box 534, 75121 Uppsala, Sweden;

    Department of Chemistry - Angstrom Laboratory, Uppsala University, Box 538, 75121 Uppsala, Sweden;

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