首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Chlorine-doped SnO(2)hydrophobic surfaces for large grain perovskite solar cells
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Chlorine-doped SnO(2)hydrophobic surfaces for large grain perovskite solar cells

机译:用于大粒钙钛矿太阳能电池的氯掺杂SnO(2)疏水表面

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Planar-heterojunction lead halide perovskite solar cells (PSCs) have attracted considerable attention because of their simple and low-temperature fabrication process. Unfortunately, the electron transport layer (ETL) in these planar devices still suffer low electron mobility due to inefficient photoelectron extraction and carrier recombination, leading to low stable efficiency with highJ-Vhysteresis. Here, we prepared chlorine-capped tin oxide nanocrystals (SnO2-Cl) by facile treatment of SnO(2)nanoparticles with chloroform-D/2-methoxy ethanol solvent. By introducing halogen (Cl), the hydrophobic surface increases the grain size and crystallinity of perovskites, which dramatically reduces the charge trap density and suppresses the charge recombination. Combining the high work function, SnO2-Cl as an ETL exhibits superior electronic properties by mitigating non-radiative recombination with faster charge carrier transfer. The results show that SnO2-Cl based planar-heterojunction perovskite solar cells produce remarkably higher performances compared with untreated SnO2, increasing the power conversion efficiency (PCE) from 15.07% to 18.1% free of hysteresis. This simple method, providing the effect of halogen modified electron transport layer interface, paves the way for its application in interface engineering on ETL/perovskites for PSCs with enhanced photovoltaic performance.
机译:平面 - 异质结铅卤化物钙钙钛矿太阳能电池(PSC)由于其简单和低温制造工艺而引起了相当大的关注。遗憾的是,由于光电子萃取和载体重组,这些平面装置中的电子传输层(ETL)仍然遭受低电子迁移率,导致效率低稳定效率。这里,通过使用氯仿-D / 2-甲氧基乙醇溶剂,通过容纳链子(2)纳米颗粒的体内处理来制备氯封端的氧化锡纳米晶(SnO2-Cl)。通过引入卤素(CL),疏水表面增加钙酸盐的晶粒尺寸和结晶度,这显着降低了电荷捕集密度并抑制电荷重组。结合高功函数,随着ETL的,通过使非辐射重组具有更快的电荷载体转移,通过减轻非辐射重组来表现出优异的电子性能。结果表明,与未处理的SnO2相比,SnO2-Cl基于基于平面 - 异质结钙钛矿太阳能电池产生显着更高的性能,从而增加了15.07%至18.1%的功率转换效率(PCE)。这种简单的方法,提供卤素改性电子传输层界面的效果,为PSC的ETL / Perovskites的界面工程中的应用铺平了途径,具有增强的光伏性能。

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