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首页> 外文期刊>Journal of Semiconductors >HI hydrolysis-derived intermediate as booster for CsPbI_3 perovskite: from crystal structure, film fabrication to device performance
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HI hydrolysis-derived intermediate as booster for CsPbI_3 perovskite: from crystal structure, film fabrication to device performance

机译:HI水解衍生的中间体作为CSPBI_3 PEROVSKITE的增压器:从晶体结构,薄膜制造到装置性能

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摘要

Nowadays, inorganic CsPbI_3 perovskite solar cells (PSCs) have become one of the most attractive research hotspots in photovoltaic field for its superior chemical stability and excellent photo-electronic properties. Since the first independent report in 2015, the power conversion efficiency (PCE) of CsPbI_3 based PSCs has sharply increased from 3.9% to 19.03%. Importantly, during the developing process of CsPbI_3 PSCs, HI hydrolysis-derived intermediate plays an important role: from stabilizing the crystal structure, optimizing the fabricated film to boosting the device performance. In this review, the different crystal and electronic structures of CsPbI_3 are introduced. We then trace the history and disputes of HI hydrolysis-derived intermediate to make this review more logical. Meanwhile, we highlight the functions of HI hydrolysis-derived intermediate, and systematically summarize the advanced works on CsPbI_3 PSCs. Finally, the bottlenecks and prospects are revealed to further increase the CsPbI_3 PSCs performance.
机译:如今,无机CSPBI_3 Perovskite太阳能电池(PSC)已成为光伏领域中最具吸引力的研究热点之一,以实现其优越的化学稳定性和优异的光电性能。自2015年第一个独立报告以来,基于CSPBI_3的PSC的功率转换效率(PCE)从3.9%增加到19.03%。重要的是,在CSPBI_3 PSC的开发过程中,HI水解衍生的中间体起着重要作用:从稳定晶体结构,优化制造的薄膜以提高器件性能。在本文中,介绍了CSPBI_3的不同晶体和电子结构。然后,我们追溯了HI水解衍生的中间体的历史和争端,使这综述更加逻辑。同时,我们突出了HI水解衍生的中间体的功能,并系统地总结了CSPBI_3 PSC上的高级作品。最后,揭示了瓶颈和前景,以进一步提高CSPBI_3 PSC性能。

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