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首页> 外文期刊>Materials Chemistry Frontiers >Inverted perovskite solar cells based on potassium salt-modified NiOX hole transport layers
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Inverted perovskite solar cells based on potassium salt-modified NiOX hole transport layers

机译:倒基于钾钙钛矿的太阳能电池传输层salt-modified NiOX洞

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摘要

Perovskite solar cells (PSCs) have been attracting increasing attention in recent years because of their exceptional high efficiency with incredible developments. However, the poor contact between the hole transport layer (HTL) and perovskite layer still limits the further development of power conversion efficiency (PCE) for inverted solar cells, particularly for inorganic HTL based devices. Herein, potassium salt (KI, KSCN and KNO3) modified nickel oxides are selected as HTLs to improve the photovoltaic performance of an inverted device. We found that all potassium salts play positive roles in optimizing the photovoltaic parameters. Through the modification of potassium salts, higher charge recombination impedance and strong photoluminescence quenching were achieved, which means retarded carrier nonradiative recombination and quick charge transfer at the interface. Besides, KI modified NiOX could improve the perovskite film coverage and reduce trap densities. Thus, the champion device based on a KI modified NiOx film attained a PCE of 20.10% with an enhanced fill factor of 0.812. The findings demonstrate that potassium doping is an effective route to improve the performance of inverted planar PSCs.
机译:钙钛矿太阳能电池已经被吸引近年来越来越多的关注,因为他们的特殊效率高和难以置信的发展。空穴传输层(HTL)和钙钛矿层仍限制了进一步发展反向功率转换效率(PCE)太阳能电池,尤其是无机HTL基础设备。镍氧化物选为HTLs硝酸钾)修改改进的光电性能反向装置。盐优化中扮演积极的角色光电参数。的盐,钾复合收取更高费用阻抗和强烈的光致发光猝灭了,这就意味着推迟航母吗非辐射的复合和快速充电传输接口。NiOX可以改善钙钛矿的电影报道并减少陷阱密度。设备基于KI修改NiOx电影获得20.10%的PCE的增强填充因数0.812. 提高掺杂是一种有效的途径倒平面已经的性能。

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