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Anion Binding Interaction Enhances the Robustness of Iodide for High-Performance Perovskite Solar Cells.

ACS applied materials & interfaces(2024)SCI 2区

Shandong Univ Sci & Technol | Chinese Acad Sci

Cited 1|Views34
Abstract
Owing to the ionic bond nature of the Pb-I bond, the iodide at the interface of perovskite polycrystalline films was easily lost during the preparation process, resulting in the formation of a large number of iodine vacancy defects. The presence of iodine vacancy defects can cause nonradiative recombination, provide a pathway for iodide migration, and be harmful to the power conversion efficiency (PCE) and stability of organic-inorganic hybrid perovskite solar cells (HPSCs). Here, in order to increase the robustness of iodides at the interface, a strategy to introduce anion binding effects was developed to stabilize the perovskite films. It was demonstrated that the N,N'-diphenylurea (DPU), characterized by high anionic binding constants and a Y-shaped structure, provides a relatively strong hydrogen bond donor site to effectively reduce the iodine loss during film preparation and inhibits iodide migration in the device working condition. As expected, the reduced iodine loss considerably improves the quality of the perovskite films and suppresses nonradiative recombination. The performance of the device after DPU modification was significantly increased, with the PCE rising from 23.65 to 25.01% with huge stability enhancement as well.
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Key words
perovskite solar cells,iodine loss,hydrogenbonds,defect passivation,stability
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要点】:本文通过引入负离子绑定效应,提高了碘在钙钛矿太阳能电池中的稳定性和效率。

方法】:研究采用了一种名为N,N'-二苯基尿素(DPU)的分子,通过其高负离子绑定常数和Y形结构,减少制备过程中碘的损失并抑制器件工作条件下的碘迁移。

实验】:实验结果显示,经DPU改性后的器件效率从23.65%提升至25.01%,稳定性也得到了显著提升。数据集名称未提及,但实验使用了钙钛矿多晶薄膜界面碘空位缺陷的表征和DPU改性器件的性能测试。