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长奇数链无机-有机层状钙钛矿型杂化物[(CHNH)PbI](n = 11、13和15)的热致变色相变

Thermochromic Phase Transitions of Long Odd-Chained Inorganic-Organic Layered Perovskite-Type Hybrids [(CHNH)PbI], = 11, 13, and 15.

作者信息

Lemmerer Andreas

机构信息

Molecular Sciences Institute, School of Chemistry, University of the Witwatersrand, Johannesburg PO WITS 2050, South Africa.

出版信息

Inorg Chem. 2022 May 2;61(17):6353-6366. doi: 10.1021/acs.inorgchem.1c03132. Epub 2022 Apr 21.

DOI:10.1021/acs.inorgchem.1c03132
PMID:35446022
Abstract

We investigate the last members of a series of inorganic-organic hybrid materials of the general formula [(CHNH)PbI] (abbreviated CPbI). The self-assembly of the inorganic and organic components has a perovskite-like structure as the two-dimensional (2D) inorganic layers have four corners of the lead(II) iodide octahedra being shared out. The inorganic layers are separated by bilayers of alkylammonium chains, in this case with = 11, 13, and 15. These materials exhibit complex phase behavior in the temperature range from -20 to + 81 °C. Differential scanning calorimetry and single-crystal X-ray diffraction enabled the phase transition temperatures and enthalpies to be determined and the structural changes that occur at the phase transition temperature. The number of phases is dependent on the chain length: for = 11 and 15, there are three phases, and for = 13, there are four phases. Regardless of the number of phases, all three compounds have identical lowest-temperature phases (all stable below room temperature), which have inorganic layers that are staggered, alkylammonium chains that are planar and nonplanar, and yellow crystals. The room-temperature phases for the three compounds differ, but all are orange. CPbI has staggered layers, and CPbI and CPbI have identical room-temperature phases with eclipsed layers. CPbI and CPbI also show an additional phase between the lowest-temperature and room-temperature phases.

摘要

我们研究了通式为[(CHNH)PbI](简称为CPbI)的一系列无机-有机杂化材料的最后几个成员。无机和有机组分的自组装具有钙钛矿样结构,因为二维(2D)无机层中碘化铅(II)八面体的四个角是共用的。无机层被烷基铵链双层隔开,在这种情况下,n = 11、13和15。这些材料在-20至+81°C的温度范围内表现出复杂的相行为。差示扫描量热法和单晶X射线衍射能够确定相变温度和焓以及在相变温度下发生的结构变化。相的数量取决于链长:对于n = 11和15,有三个相,对于n = 13,有四个相。无论相的数量如何,所有三种化合物都具有相同的最低温度相(在室温以下均稳定),其无机层是交错的,烷基铵链是平面的和非平面的,并且是黄色晶体。三种化合物的室温相不同,但均为橙色。CPbI具有交错层,而CPbI和CPbI具有相同的室温相且层是重叠的。CPbI和CPbI在最低温度相和室温相之间还显示出一个额外的相。

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