Novikov Sergei A, Long Hope A, Valueva Aleksandra D, Klepov Vladislav V
Department of Chemistry, University of Georgia, Athens, Georgia 30602, United States.
J Am Chem Soc. 2024 Dec 25;146(51):35449-35461. doi: 10.1021/jacs.4c14554. Epub 2024 Dec 10.
The synthesis of new hybrid halide materials is attracting increasing research interest due to their potential optoelectronic applications. However, general design principles that explain and predict their properties are still limited. In this work, we attempted to reveal the role of intermolecular interactions on the optical properties in a series of hybrid halides with an (EtNH)SnTeCl ( = 1-4) composition. DFT calculations showed that the dispersions of the bands involving the Te 5s orbital character gradually decrease as the size of the organic cation increases, indicating a reducing orbital overlap between neighboring TeCl complexes. We characterized the photoluminescence (PL) of the Sn/Te solid solutions in (EtNH)SnTeCl ( = 1-4) phases to correlate the electronic and optical properties. The PL response shows no concentration quenching effects in the (EtN)SnTeCl series, which demonstrated electronically isolated TeCl complexes. However, the series with smaller organic cations ( = 1-3) and higher electronic dimensionality show concentration quenching effects, which decrease as a function of the Te 5s band dispersions in these compounds. Similar trends can be revealed using a simple semiquantitative electronic dimensionality analysis method by means of Voronoi polyhedra. Since this approach relies only on structural data, it enables rapid characterization of orbital overlap between metal halide complexes in hybrid materials without DFT calculations. The present results allow us to conclude that electronic dimensionality plays an essential role in the photophysical properties of hybrid halide compounds and can be used to fine-tune their properties.
新型杂化卤化物材料的合成因其潜在的光电应用而吸引了越来越多的研究兴趣。然而,解释和预测其性质的通用设计原则仍然有限。在这项工作中,我们试图揭示分子间相互作用在一系列具有(EtNH)SnTeCl(n = 1 - 4)组成的杂化卤化物光学性质中所起的作用。密度泛函理论(DFT)计算表明,随着有机阳离子尺寸的增加,涉及Te 5s轨道特征的能带色散逐渐减小,这表明相邻TeCl络合物之间的轨道重叠在减小。我们对(EtNH)SnTeCl(n = 1 - 4)相中Sn/Te固溶体的光致发光(PL)进行了表征,以关联其电子和光学性质。PL响应在(EtN)SnTeCl系列中未显示出浓度猝灭效应,这表明TeCl络合物是电子隔离的。然而,具有较小有机阳离子(n = 1 - 3)和较高电子维度的系列显示出浓度猝灭效应,且这种效应随着这些化合物中Te 5s能带色散的变化而减小。使用一种简单的半定量电子维度分析方法,借助Voronoi多面体,可以揭示类似的趋势。由于这种方法仅依赖于结构数据,因此无需进行DFT计算就能快速表征杂化材料中金属卤化物络合物之间的轨道重叠。目前的结果使我们能够得出结论,电子维度在杂化卤化物化合物的光物理性质中起着至关重要的作用,并且可用于微调其性质。