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Synergistic Interface Energy Band Alignment Optimization and Defect Passivation toward Efficient and Simple‐Structured Perovskite Solar Cell

机译:高效能和结构简单的钙钛矿太阳能电池的协同界面能带对准优化和缺陷钝化

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摘要

Efficient electron transport layer–free perovskite solar cells (ETL‐free PSCs) with cost‐effective and simplified design can greatly promote the large area flexible application of PSCs. However, the absence of ETL usually leads to the mismatched indium tin oxide (ITO)/perovskite interface energy levels, which limits charge transfer and collection, and results in severe energy loss and poor device performance. To address this, a polar nonconjugated small‐molecule modifier is introduced to lower the work function of ITO and optimize interface energy level alignment by virtue of an inherent dipole, as verified by photoemission spectroscopy and Kelvin probe force microscopy measurements. The resultant barrier‐free ITO/perovskite contact favors efficient charge transfer and suppresses nonradiative recombination, endowing the device with enhanced open circuit voltage, short circuit current density, and fill factor, simultaneously. Accordingly, power conversion efficiency increases greatly from 12.81% to a record breaking 20.55%, comparable to state‐of‐the‐art PSCs with a sophisticated ETL. Also, the stability is enhanced with decreased hysteresis effect due to interface defect passivation and inhibited interface charge accumulation. This work facilitates the further development of highly efficient, flexible, and recyclable ETL‐free PSCs with simplified design and low cost by interface electronic structure engineering through facile electrode modification.
机译:具有成本效益和简化设计的高效无电子传输层钙钛矿太阳能电池(ETL不含PSC)可以大大促进PSC的大面积灵活应用。但是,缺少ETL通常会导致氧化铟锡(ITO)/钙钛矿界面能级不匹配,从而限制了电荷的转移和收集,并导致严重的能量损失和较差的器件性能。为了解决这个问题,引入了一种极性非共轭小分子改性剂,以降低ITO的功函数,并借助固有的偶极子来优化界面能级对准,这已通过光发射光谱法和开尔文探针力显微镜测量得到了验证。最终的无障碍ITO /钙钛矿接触有利于有效的电荷转移并抑制非辐射复合,从而使器件具有增强的开路电压,短路电流密度和填充因子。因此,功率转换效率从12.81%大大提高到创纪录的20.55%,与具有先进ETL的最新PSC相当。而且,由于界面缺陷钝化和抑制的界面电荷积聚,具有降低的磁滞效应而提高了稳定性。这项工作通过接口电子结构工程和便捷的电极改造,促进了高效,灵活和可回收的无ETL的PSC的进一步开发,其设计简化,成本低廉。

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