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Quantum Dot Sensitized Whisperonic Solar Cells—Improving Efficiency Through Whispering Gallery Modes

机译:量子点敏化耳垂太阳能电池 - 通过耳语画廊模式提高效率

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摘要

Environmental deterioration and depletion in conventional energy resources greatly demand the need for photovoltaic devices, which use solar radiation to meet future energy demands. Efficient light management plays a pivotal role in improving the performance of photovoltaic devices. Various avenues have been explored to address light management in solar cells. Employing whispering gallery mode (WGM) microresonators in solar cell device is one such strategy. Using resonating structures for light scattering is recently gaining momentum as they exhibit great potential to enhance the efficiency through light trapping. Functional material-based microresonators further provide an added advantage as they combine inherent optical resonance with the material properties suitable for photovoltaics like efficient charge separation and transport in one platform. “Whisperonic solar cell” is a broadly classified device in which resonating cavities are used in the cell architecture to effectively scatter the light, resulting in enhanced light absorption and thus efficiency. Recent studies reveal that WGM-enabled optical microcavities can effectively get coupled to the light absorber in a sensitized solar cell (SSC) and improve the performance of SSC significantly. In this short review, we briefly present the idea of enhancing the efficiency of solar cell using WGMs. Several case studies available from the literature for realizing the concept of WGM for light trapping are highlighted. Particular focus is given to the quantum dot sensitized whisperonic solar cells. The concept is much more universal and will be useful in both thin-film and sensitized solar cells.
机译:传统能源环境恶化和消耗大大要求对使用太阳辐射来满足未来能源需求的光伏器件的需求。高效的轻型管理在提高光伏器件的性能方面发挥了枢转作用。各种途径已被探索以解决太阳能电池的轻型管理。在太阳能电池装置中采用低声语画廊模式(WGM)微管是一种这样的策略。利用用于光散射的谐振结构最近获得动力,因为它们具有通过光捕获提高效率的巨大潜力。基于功能材料的微生物器进一步提供了一种额外的优点,因为它们将固有的光学共振与适合于光伏分离和一个平台的有效电荷分离和运输的材料特性相结合。 “耳垂太阳能电池”是一种广泛分类的装置,其中在电池架构中使用谐振腔以有效地散射光,从而产生增强的光吸收和因此效率。最近的研究表明,启用WGM的光学微腔可以有效地耦合到敏化太阳能电池(SSC)中的光吸收器,并显着提高SSC的性能。在这次简短的评论中,我们简要介绍了使用WGM提高太阳能电池效率的想法。突出了几种从文献中获得的案例研究,以实现用于光划分的WGM的概念。对量子点敏化弱脑电音太阳能电池的特定焦点。该概念更普遍,可用于薄膜和敏化太阳能电池。

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