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具有低陷阱密度和高光响应的稳定的甲脒/甲铵混合碘化铅钙钛矿整体微晶体。

Air-stable formamidinium/methylammonium mixed lead iodide perovskite integral microcrystals with low trap density and high photo-responsivity.

机构信息

HEEGER Beijing Research & Development Center, School of Chemistry, Beihang University, Beijing 100191, China.

出版信息

Phys Chem Chem Phys. 2019 Feb 6;21(6):3106-3113. doi: 10.1039/c8cp07271j.

Abstract

Here based on integral microcrystal (IMC) thin films of halide perovskites containing formamidinium (FA)/methylammonium (MA) mixed cations, afforded by a facile approach combining an anti-solvent and inverse temperature crystallization, we investigate the impact of the addition of MAPbBr3 on the phase, thermal and environmental stabilities as well as the opto-electronic properties in FA-based IMC films. By single-crystal XRD, FA based IMCs have been found to possess a perfect cubic structure showing a slight lattice contraction compared to pristine FAPbI3 crystals. In conjunction with optical and electrical analyses, the essential role of the introduced MA and Br ions in stabilizing the black phase in FA-based IMCs has been clarified, which explains the observed enhancement of photoluminescence and reduced trap densities. We also achieve stable pure FAPbI3 crystals that do not exhibit a yellow-phase transition after one month in air. By utilizing (FAPbI3)1-x(MAPbBr3)x IMCs as the photo-absorber, we realize highly photo-responsive photodiodes with a satisfactory stability in air and thermal stability upon heating. Of interest, the best photoresponsivity exceeding 300 A W-1 is achieved upon appropriate air-exposure, which is among the highest values reported for FA-based perovskite photodetectors. The air-modified optoelectronic behaviour can be related to the trap passivation through the surface physisorption of the environmental O2, leading to reduced trap densities and resultant harmful SRH recombination.

摘要

基于卤化物钙钛矿的整体微晶体(IMC)薄膜,包含甲脒(FA)/甲铵(MA)混合阳离子,通过一种简便的方法结合反溶剂和逆温度结晶得到,我们研究了添加 MAPbBr3 对 FA 基 IMC 薄膜的相、热和环境稳定性以及光电性能的影响。通过单晶 X 射线衍射,发现 FA 基 IMC 具有完美的立方结构,与原始 FAPbI3 晶体相比略有晶格收缩。结合光学和电学分析,阐明了引入的 MA 和 Br 离子在稳定 FA 基 IMC 中的黑相方面的重要作用,这解释了观察到的光致发光增强和陷阱密度降低。我们还实现了稳定的纯 FAPbI3 晶体,在空气中一个月后不会发生黄相转变。利用(FAPbI3)1-x(MAPbBr3)x IMC 作为光吸收剂,我们实现了在空气中具有高响应性的光电二极管,并且在加热时具有良好的热稳定性。有趣的是,在适当的空气暴露下,超过 300 A W-1 的最佳光响应率得以实现,这是报道的基于 FA 的钙钛矿光电探测器中的最高值之一。空气修饰的光电行为可以通过环境 O2 的表面物理吸附来实现陷阱钝化,从而降低陷阱密度和有害的 SRH 复合。

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