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Reversible and Irreversible Thermochromism in Copper-Based Halide Perovskites

机译:铜基卤化物钙锌矿中可逆和不可逆的热切割

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摘要

Copper-based layered perovskites have shown abundant phase transitions and thermochromic behaviors. However, there are very few cases of perovskites with irreversible transitions. Here, the thermochromic behavior of two perovskites (CEA)(2)CuCl4 and (BEA)(2)CuCl4 is discussed, where CEA = 2-chloroethylammonium and BEA = 2-bromoethylammonium, the latter of which is reported for the first time. These materials exhibit a reversible and irreversible thermochromic behavior determined by the nature of the organic cation. Using nuclear magnetic resonance, X-ray diffraction, and optical absorption, it was possible to investigate the mechanism for this transition: a topochemical exchange reaction between the organic and inorganic halides in (BEA)(2)CuCl4 to yield the mixed-halide perovskite (BEA)(1.1)(CEA)(0.9)CuCl3.1Br0.9. These materials and the fundamental principles shown herein have potential use as low-cost irreversible thermochromic sensors and their design.
机译:基于铜的层状钙酸盐表明了丰富的相变和热致变色行为。 然而,佩洛夫斯克斯的患者很少有不可逆转的过渡。 这里,讨论了两种钙酸盐(CEA)(2)CuCl4和(2)CuCl4的热致变色行为,其中CeA = 2-氯乙基铵和BEA = 2-溴乙基铵,其次是首次报道的。 这些材料表现出由有机阳离子的性质确定的可逆性和不可逆的热致变色行为。 使用核磁共振,X射线衍射和光学吸收,可以研究这种过渡的机制:(BEA)(2)CuCl4中的有机和无机卤化物之间的TopeChemical交换反应,得到混合卤化物钙钛矿 (BEA)(1.1)(CEA)(0.9)CUCL3.1BR0.9。 这些材料和本文所示的基本原理具有低成本不可逆的热致变色传感器及其设计的潜在用途。

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