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Pseudo-Halide Perovskite Solar Cells

机译:伪卤化物钙钛矿太阳能电池

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Perovskite solar cells (PSCs) have achieved certified power conversion efficiency (PCE) over 25%. Though their high PCE can be achieved by optimizing absorber layer and device interfaces, the intrinsic instability of perovskite materials is still a key issue to be resolved. Mixed-halide perovskites using multiple halogen constituents have been proved to improve robustness; however, the anion at the X site in the ABX(3) formula is not limited to halogens. Other negative monovalent ions with similar properties to halogens, such as pseudo-halogens, have the opportunity to form perovskites with ABX(3) stoichiometry. Recently, thiocyanates and formates have been utilized to synthesize stable perovskite materials. This review presents the evolution of pseudo-halide perovskite solar cells in the past few years. The intrinsic properties, their effects on crystal structure, and bandgap engineering of the pseudo-halide perovskites are summarized. Various thiocyanate compounds applied in the fabrication of perovskite solar cells are discussed. The fabrication process, film formation mechanism, and crystallinity of pseudo-halide perovskites are elucidated to understand their effects on the photovoltaic performance and device stability. Other applications of pseudo-halide perovskites are summarized in the final section. Lastly, this review concludes with suggestions and outlooks for further research directions.
机译:Perovskite太阳能电池(PSCS)已经实现了超过25%的经过认证的电源转换效率(PCE)。尽管通过优化吸收层和器件界面可以实现它们的高PCE,但Perovskite材料的内在不稳定性仍然是要解决的关键问题。已证明使用多种卤素成分的混合卤化卤化钙酸盐可提高鲁棒性;然而,ABX(3)配方中X位点的阴离子不限于卤素。其他具有与卤素相似性质的阴性单价离子,例如假卤素,具有与ABX(3)化学计量的钙酸盐形成钙酸盐。最近,已经利用硫氰酸酯和甲酸酯来合成稳定的钙钛矿材料。此评价介绍了过去几年伪卤化物钙钛矿太阳能电池的演变。总结了本质性质,它们对晶体结构的对晶体结构的影响和伪卤化物钙锌矿的带隙工程。讨论了在制备钙钛矿太阳能电池制造中的各种硫氰酸酯化合物。阐明了伪卤化物钙锌矿的制造工艺,膜形成机理和结晶度,以了解它们对光伏性能和装置稳定性的影响。伪卤化物钙钛矿的其他应用总结在最后一节中。最后,本综述关于进一步研究方向的建议和前景结束。

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