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Stable, color-tunable 2D SCN-based perovskites: revealing the critical influence of an asymmetric pseudo-halide on constituent ions

机译:稳定,color-tunable 2 d SCN-based钙钛矿:揭示了非对称的关键影响pseudo-halide在离子组成

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摘要

Two-dimensional (2D) layered perovskites (A(n+1)B(n)X(3n+1), n = 1, 2, ...) have recently attracted significant research interest because of their enhanced ambient stability compared to their conventional 3D counterparts. In addition to the common A-site cation engineering, using an asymmetric pseudo-halide anion, SCN-, in the anion X-site has been recently proven to be another effective approach to constitute 2D perovskites. Among these, 2D (MA)(2)Pb(SCN)(2)I-2 was the most widely investigated and was considered to be a promising material owing to its good optoelectronic properties; however, its poor stability has aroused concerns in recent researches. In this study, systematical composition engineering of A(2)Pb(SCN)(2)X-2 (A = FA(+), MA(+), Cs+ and X = Br-, I-) was conducted. Our results revealed that the linear SCN- anion dictates critical restrictions on the constituent ions of its derived 2D framework (PbX4(SCN)(2)), which has not yet been extensively discussed. We demonstrated that using a smaller Cs+ cation can afford a more favorable 2D structure compared with the MA(+) cation. Cs2Pb(SCN)(2)I-2 was revealed to possess improved stability and photo-response compared to (MA)(2)Pb(SCN)(2)I-2. Interestingly, Cs2Pb(SCN)(2)I-2 and (MA)(2)Pb(SCN)(2)I-2 appear to possess distinct electronic band structures. This is indicated by their discrepant photoluminescence spectra, in which the former exhibits a rather intense singlet emission at room temperature in contrast with the latter, which shows a dominant emission associated with triplet or defective states. Furthermore, using a smaller Cs+ cation enables facile replacement of a smaller halide anion. A series of mixed-halide 2D Cs2Pb(SCN)(2)(I1-xBrx)(2) (x = 0, 1/3, 1/2, 2/3, 1) with varying vivid colors was explored by both calculation and experimental efforts to corroborate the enhanced stability when the x value increases. The results revealed in this study might represent a novel discovery of an inherent trait of the 2D SCN-based perovskites and also suggest that the all-inorganic 2D Cs2Pb(SCN)(2)X-2 perovskite system is a promising class of materials with good stability and color-tunability that deserves further exploration.
机译:二维(2 d)层状钙钛矿((n + 1) B (n) X (3 n + 1), n = 1, 2,…)最近因为吸引了大量的研究兴趣增强他们的环境比较稳定传统的3 d同行。普通网站阳离子工程,使用一个不对称pseudo-halide阴离子,SCN -的阴离子X-site最近被证明是另一种有效的方法来构成2 d钙钛矿。最广泛的调查,由于被认为是一种很有前途的材料其良好的光电性能;稳定性差最近引起了担忧研究。组成的工程(2)Pb (SCN) (2) x - 2 (A =FA(+)、马(+)、c + X = Br -,我-)。我们的研究结果显示,线性SCN -阴离子决定关键限制成分离子的派生的二维框架(PbX4 (SCN) (2)),还没有被广泛讨论。使用较小的Cs +阳离子可以证明承担一个更有利的二维结构比较马(+)阳离子。显示拥有稳定和改善photo-response相比(MA) (2) Pb (SCN)(2)我2。有趣的是,Cs2Pb (SCN)(2)我2(MA) (2) Pb (SCN)(2)我2似乎拥有截然不同的电子能带结构。他们相差的光致发光光谱,前者展品,而强烈的单线态排放在室温下形成鲜明对比后者,这显示了一个主要的排放与三联体或有缺陷的状态有关。此外,使用一个更小的c +阳离子使简单更换一个更小的卤化物离子。一系列mixed-halide 2 dCs2Pb (SCN) (2) (I1-xBrx) (2) (x = 0、1/3、1/2,2/3,1)探索了不同鲜艳的色彩计算和实验的努力证实x时增强稳定性价值增加。研究可能代表一个新奇的发现固有特征的2 d SCN-based钙钛矿也表明all-inorganic 2 dCs2Pb (SCN) (2) x - 2钙钛矿系统是一种很有前途的类的材料具有良好的稳定性和color-tunability值得进一步探索。

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