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Soft Template-Controlled Growth of High-Quality CsPbI_3 Films for Efficient and Stable Solar Cells

机译:用于高效和稳定太阳能电池的高质量CsPbI_3薄膜的软模板控制生长

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摘要

The unfavorable morphology and inefficient utilization of phase transition reversibility have limited the high-temperature-processed inorganic perovskite films in both efficiency and stability. Here, a simple soft template-controlled growth (STCG) method is reported by introducing (adamantan-1-yl)methanammonium to control the nucleation and growth rate of CsPbI3 crystals, which gives rise to pinhole-free CsPbI3 film with a grain size on a micrometer scale. The STCG-based CsPbI3 perovskite solar cell exhibits a power conversion efficiency of 16.04% with significantly reduced defect densities and charge recombination. More importantly, an all-inorganic solar cell with the architecture fluorine-doped tin oxide (FTO)/NiOx/STCG-CsPbI3/ZnO/indium-doped tin oxide (ITO) is successfully fabricated to demonstrate its real advantage in thermal stability. By suppressing the inductive effect of defects during the phase transition and utilizing the unique reversibility of the phase transition for the high-temperature-processed CsPbI3 film, the all-inorganic solar cell retains 90% of its initial efficiency after 3000 h of continuous light soaking and heating.
机译:相变可逆性的不利形态和低效利用限制了高温处理的无机钙钛矿膜的效率和稳定性。在这里,报道了一种简单的软模板控制生长(STCG)方法,方法是引入(金刚烷-1-基)甲基铵来控制CsPbI3晶体的成核和生长速率,从而产生晶粒尺寸为0的无针孔CsPbI3膜。千分尺基于STCG的CsPbI3钙钛矿型太阳能电池具有16.04%的功率转换效率,且缺陷密度和电荷重组显着降低。更重要的是,成功制造了具有氟掺杂氧化锡(FTO)/ NiOx / STCG-CsPbI3 / ZnO /铟掺杂氧化锡(ITO)结构的全无机太阳能电池,以展示其在热稳定性方面的真正优势。通过抑制相变过程中缺陷的感应效应,并利用高温处理后的CsPbI3膜独特的相变可逆性,全无机太阳能电池在连续浸泡3000小时后仍能保持其初始效率的90%和加热。

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