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首页> 外文期刊>Advanced energy materials >Controllable Perovskite Crystallization via Antisolvent Technique Using Chloride Additives for Highly Efficient Planar Perovskite Solar Cells
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Controllable Perovskite Crystallization via Antisolvent Technique Using Chloride Additives for Highly Efficient Planar Perovskite Solar Cells

机译:使用氯化物添加剂对高效平面钙钛矿太阳能电池进行抗溶剂技术可控钙钛矿结晶

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摘要

The presence of surface and grain boundary defects in organic-inorganic halide perovskite films can be detrimental to both the performance and operational stability of perovskite solar cells (PSCs). Here, the effect of chloride additives is studied on the bulk and surface defects of the mixed cation and halide PSCs. It is found that using an antisolvent technique, the perovskite film is divided into two layers, i.e., a bottom layer with large grains and a thin capping layer with small grains. The addition of formamidinium chloride (FACl) into the precursor solution removes the small-grained perovskite capping layer and suppresses the formation of bulk and surface defects, providing a perovskite film with enhanced crystallinity and large grain size of over 1 mu m. Time-resolved photoluminescence measurements show longer lifetimes for perovskite films modified by FACl and subsequently passivated by 1-adamantylamine hydrochloride as compared to the reference sample. Impedance spectroscopy measurements show that these treatments reduce the recombination in the PSCs, leading to a champion device with power conversion efficiency (PCE) of 21.2%, an open circuit voltage of 1152 mV and negligible hysteresis. The Cl treated PSC also shows improved operational stability with only 12% PCE loss after 700 h under continuous illumination.
机译:有机 - 无机卤化物钙钛矿膜中的表面和晶界缺陷的存在可能对钙钛矿太阳能电池(PSC)的性能和操作稳定性有害。这里,研究了混合阳离子和卤化物PSC的体积和表面缺陷对氯化物添加剂的影响。结果发现,使用防溶剂技术,将钙钛矿膜分成两层,即具有大晶粒的底层和具有小晶粒的薄覆盖层。将甲脒氯化氨酸(FACL)加入前体溶液中除去小颗粒钙钛矿封端层,并抑制散装和表面缺陷的形成,提供具有增强的结晶度和大粒径超过1μm的钙钛矿膜。时间分离的光致发光测量显示通过FACL改性的钙钛矿膜的寿命更长,随后与参考样品相比,由1-亚氨基氨基胺盐酸盐钝化。阻抗光谱测量表明,这些处理减少了PSC中的重组,导致具有21.2%的功率转换效率(PCE)的冠军装置,开路电压为1152 mV,滞后可忽略不计。 CL处理的PSC还显示出改善的操作稳定性,在连续照明下700小时后仅具有12%的PCE损耗。

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