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Heterojunction Perovskite Solar Cells: Opto- Electro-Thermal Physics, Modeling, and Experiment

机译:异结合Perovskite太阳能电池:光电热物理,建模和实验

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摘要

Organic-inorganic heterojunction perovskite solar cell (PSC) is promising for low-cost and high-performance photovoltaics. To further promote the performance of PSCs, understanding and controlling the underneath photoconversion mechanisms are highly necessary. Here, we present a comprehensive opto-electro-thermal (OET) study on the heterojunction PSCs by quantitatively addressing the coupled optical, carrier transport, and thermodynamic behaviors within the device. With achieving a good agreement with the experiment, we theoretically explore the thermodynamic mechanisms involving the energy conversions and focus especially on the origins of the various energy losses in PSCs. We summarize six categories of microscopic heat conversion processes in the heterojunction PSC, where the Joule and Peltier heats can be defined as the intrinsic losses in PSCs. Moreover, we also discuss the possible manipulation methods to decrease the energy losses, for example, by tailoring the doping concentration and energy-level alignment. An exemplified OET optimization is also presented, which predicts that the PCE of the fabricated PSC can be enhanced from 21.37% to 23.84%.
机译:有机 - 无机杂交结钙钛矿太阳能电池(PSC)对低成本和高性能的光伏有前途。为了进一步促进PSC的性能,非常必要地理解和控制下下的光电转换机制。这里,我们通过定量地寻址装置内的耦合光学,载体传输和热力学行为来提出一个全面的光电热(OET)研究。通过实现与实验的良好一致性,我们理论上探讨了涉及能量转化的热力学机制,特别是对PSC中各种能量损失的起源。我们总结了异质结PSC中的六个类别的微观热转换过程,其中焦耳和珀耳帖热可以定义为PSC中的内在损耗。此外,我们还讨论了可能的操纵方法,以减少能量损失,例如,通过定制掺杂浓度和能量水平对准来降低能量损失。还提出了示例性OET优化,其预测制造的PSC的PCE可以从21.37%增强到23.84%。

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