Department of Chemistry, Philipps-University Marburg, Hans-Meerwein-Straße 4, 35032, Marburg, Germany.
Chemistry. 2023 Jan 9;29(2):e202202931. doi: 10.1002/chem.202202931. Epub 2022 Nov 14.
Studying structurally related families of compounds is a valuable tool in understanding and predicting material properties and has been extensively used for metal halide perovskites. Due to the variable anion structures in group 15 halogenido metalates, similar family relations are still largely missing. Herein, we present compounds featuring the [Sb I ] family of anions, including the first n=5 member in [Hpyz] [Sb I ] (Hpyz=pyrazinium), which contains the largest halogenido pentelate anion reported to date. The optical properties of compounds featuring n=1-5 anions show a clear trend as well as an outlier, a low band gap of 1.72 eV for [Hpyz] [Sb I ], that can be well understood using quantum chemical investigations. Also using SbI and [H NMe ] [SbI ], a compound featuring a single octahedral [SbI ] unit, as limiting cases, we show that structure-property relationships can be established in group 15 halogenido metalates in a similar way as in metal halide perovskites, thus providing a framework for understanding new and known compounds in this emerging class of materials.
研究结构相关的化合物家族是理解和预测材料性质的一种有价值的工具,在金属卤化物钙钛矿中得到了广泛的应用。由于 15 族卤化物金属酸盐中阴离子结构的可变性,类似的家族关系在很大程度上仍然缺失。在此,我们介绍了具有 [Sb I ] 阴离子家族的化合物,包括第一个 n=5 成员 [Hpyz] [Sb I ](Hpyz=吡嗪鎓),其中包含了迄今为止报道的最大卤化物 pentelate 阴离子。具有 n=1-5 个阴离子的化合物的光学性质表现出明显的趋势,以及一个异常值,即 [Hpyz] [Sb I ] 的低能带隙为 1.72 eV,可以通过量子化学研究很好地理解。我们还使用 SbI 和 [H NMe ] [SbI ] 作为限制定案例,它们分别具有单个八面体 [SbI ] 单元,我们表明,在 15 族卤化物金属酸盐中可以建立类似的结构-性质关系,从而为理解这个新兴材料类别的新化合物和已知化合物提供了一个框架。