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Perovskites-Based Solar Cells: A Review of Recent Progress Materials and Processing Methods

机译:基于钙钛矿的太阳能电池:最近的进展材料和加工方法的回顾。

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摘要

With the rapid increase of efficiency up to 22.1% during the past few years, hybrid organic-inorganic metal halide perovskite solar cells (PSCs) have become a research “hot spot” for many solar cell researchers. The perovskite materials show various advantages such as long carrier diffusion lengths, widely-tunable band gap with great light absorption potential. The low-cost fabrication techniques together with the high efficiency makes PSCs comparable with Si-based solar cells. But the drawbacks such as device instability, J-V hysteresis and lead toxicity reduce the further improvement and the future commercialization of PSCs. This review begins with the discussion of crystal and electronic structures of perovskite based on recent research findings. An evolution of PSCs is also analyzed with a greater detail of each component, device structures, major device fabrication methods and the performance of PSCs acquired by each method. The following part of this review is the discussion of major barriers on the pathway for the commercialization of PSCs. The effects of crystal structure, fabrication temperature, moisture, oxygen and UV towards the stability of PSCs are discussed. The stability of other components in the PSCs are also discussed. The lead toxicity and updated research progress on lead replacement are reviewed to understand the sustainability issues of PSCs. The origin of J-V hysteresis is also briefly discussed. Finally, this review provides a roadmap on the current needs and future research directions to address the main issues of PSCs.
机译:在过去几年中,随着效率的快速提高达到22.1%,有机-无机金属卤化物钙钛矿混合太阳能电池(PSC)已成为许多太阳能电池研究人员的研究“热点”。钙钛矿材料显示出各种优点,例如,载流子扩散长度长,带隙可调,光吸收潜力大。低成本的制造技术以及高效率使PSC可以与基于Si的太阳能电池媲美。但是,诸如设备不稳定,J-V滞后和铅毒性之类的缺点减少了PSC的进一步改进和未来的商业化。这篇综述首先根据最近的研究发现对钙钛矿的晶体和电子结构进行了讨论。还对PSC的演变进行了详细分析,包括每个组件,器件结构,主要器件制造方法以及每种方法获得的PSC的性能。这篇评论的以下部分讨论了PSC商业化途径中的主要障碍。讨论了晶体结构,制造温度,水分,氧气和紫外线对PSC稳定性的影响。还讨论了PSC中其他组件的稳定性。审查了铅毒性和有关铅替代的最新研究进展,以了解PSC的可持续性问题。还简要讨论了J-V磁滞的起源。最后,这篇综述提供了有关当前需求和未来研究方向的路线图,以解决PSC的主要问题。

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