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Shifting the Sun: Solar Spectral Conversion and Extrinsic Sensitization in Natural and Artificial Photosynthesis

机译:改变太阳:自然和人工光合作用中的太阳光谱转换和外在敏化

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AbstractSolar energy harvesting is largely limited by the spectral sensitivity of the employed energy conversion system, where usually large parts of the solar spectrum do not contribute to the harvesting scheme, and where, of the contributing fraction, the full potential of each photon is not efficiently used in the generation of electrical or chemical energy. Extrinsic sensitization through photoluminescent spectral conversion has been proposed as a route to at least partially overcome this problem. Here, we discuss this approach in the emerging context of photochemical energy harvesting and storage through natural or artificial photosynthesis. Clearly contrary to application in photovoltaic energy conversion, implementation of solar spectral conversion for extrinsic sensitization of a photosynthetic machinery is very straightforward, and—when compared to intrinsic sensitization—less-strict limitations with regard to quantum coherence are seen. We now argue the ways in which extrinsic sensitization through photoluminescent spectral converters will—and will not—play its role in the area of ultra-efficient photosynthesis, and also illustrate how such extrinsic sensitization requires dedicated selection of specific conversion schemes and design strategies on system scale.
机译:摘要太阳能的收集在很大程度上受到所使用的能量转换系统的光谱灵敏度的限制,在这种能量转换系统中,通常太阳光谱的大部分不参与收集计划,并且在贡献部分中,每个光子的全部电势不能有效利用用于产生电能或化学能。已经提出通过光致发光光谱转换的外在敏化作为至少部分克服该问题的途径。在这里,我们在通过自然或人工光合作用进行光化学能收集和存储的新兴环境中讨论了这种方法。显然与在光伏能量转换中的应用相反,实现光合作用的外在敏化的太阳光谱转换非常简单,并且与本征敏化相比,在量子相干性方面的限制较少。现在,我们讨论通过光致发光光谱转换器进行外在敏化的方式将(也将不会)在超高效光合作用领域中发挥作用,并且还将说明这种外在敏化如何需要专门选择特定的转换方案和系统上的设计策略。规模。

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