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Unveiling the Effects of Hydrolysis‐Derived DMAI/DMAPbIx Intermediate Compound on the Performance of CsPbI3 Solar Cells

机译:揭示水解衍生的DMAI / DMAPbIx中间化合物对CsPbI3太阳能电池性能的影响

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摘要

Introducing hydroiodic acid (HI) as a hydrolysis‐derived precursor of the intermediate compounds has become an increasingly important issue for fabricating high quality and stable CsPbI perovskite solar cells (PSCs). However, the materials composition of the intermediate compounds and their effects on the device performance remain unclear. Here, a series of high‐quality intermediate compounds are prepared and it is shown that they consist of DMAI/DMAPbI . Further characterization of the products show that the main component of this system is still CsPbI . Most of the dimethylammonium (DMA ) organic component is lost during annealing. Only an ultrasmall amount of DMA is doped into the CsPbI and its structure is stabilized. Meanwhile, excessive DMA forms Lewis acid–base adducts and interactions with Pb on the CsPbI surface. This process passivates the CsPbI film and decreases the recombination rate. Finally, CsPbI film is fabricated with high crystalline, uniform morphology, and excellent stability. Its corresponding PSC exhibits stable property and improved power conversion efficiency (PCE) up to 17.3%.
机译:氢碘酸(HI)作为中间体化合物的水解前体的引入已成为制造高质量,稳定的CsPbI钙钛矿太阳能电池(PSC)的重要问题。但是,中间化合物的材料组成及其对器件性能的影响仍不清楚。在此,制备了一系列高质量的中间体化合物,结果表明它们由DMAI / DMAPbI组成。产品的进一步表征表明,该系统的主要成分仍然是CsPbI。在退火过程中,大部分二甲基铵(DMA)有机成分会丢失。仅极少量的DMA掺杂到CsPbI中,并且其结构稳定。同时,过量的DMA会形成路易斯酸碱加成物,并与CsPbI表面上的Pb相互作用。此过程钝化了CsPbI膜并降低了复合率。最后,CsPbI薄膜具有高结晶度,均匀的形貌和出色的稳定性。其相应的PSC表现出稳定的性能,并提高了高达17.3%的功率转换效率(PCE)。

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