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Additive Engineering to Grow Micron‐Sized Grains for Stable High Efficiency Perovskite Solar Cells

机译:增材制造技术可增加微米级晶粒以稳定高效的钙钛矿太阳能电池

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摘要

A high‐quality perovskite photoactive layer plays a crucial role in determining the device performance. An additive engineering strategy is introduced by utilizing different concentrations of N,1‐diiodoformamidine (DIFA) in the perovskite precursor solution to essentially achieve high‐quality monolayer‐like perovskite films with enhanced crystallinity, hydrophobic property, smooth surface, and grain size up to nearly 3 µm, leading to significantly reduced grain boundaries, trap densities, and thus diminished hysteresis in the resultant perovskite solar cells (PSCs). The optimized devices with 2% DIFA additive show the best device performance with a significantly enhanced power conversion efficiency (PCE) of 21.22%, as compared to the control devices with the highest PCE of 19.07%. 2% DIFA modified devices show better stability than the control ones. Overall, the introduction of DIFA additive is demonstrated to be a facile approach to obtain high‐efficiency, hysteresis‐less, and simultaneously stable PSCs.
机译:高质量的钙钛矿光敏层在决定器件性能方面起着至关重要的作用。通过在钙钛矿前体溶液中利用不同浓度的N,1-二碘甲form(DIFA)来引入一种添加工程策略,从而从根本上获得高质量的单层状钙钛矿薄膜,该薄膜具有增强的结晶度,疏水性,光滑的表面和最大至钙钛矿型太阳能电池(PSC)的晶粒边界减小了将近3 µm,从而大大降低了晶界,陷阱密度,从而减少了磁滞现象。与具有最高19.09%的PCE的控制设备相比,具有2%DIFA添加剂的优化设备显示了最佳的设备性能,功率转换效率(PCE)显着提高了21.22%。 2%DIFA改性的设备显示出比对照设备更好的稳定性。总体而言,事实证明,引入DIFA添加剂是获得高效,无滞后且同时稳定的PSC的简便方法。

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