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卤化效应诱导出多种可切换的相变材料和二次谐波产生材料。

The Halogenation Effect Induces a Variety of Switchable Phase Transition and Second-Harmonic-Generation Materials.

作者信息

Yang Siqi, Zhou Xuanshan, Mao Yangxue, Qiu Xinyu, Jiang Ting, Zeng Yiyi, Chen Zhongning, Chen Guoyong, Cai Hu, Wei Zhenhong

机构信息

School of Chemistry and Chemical Engineering, Nanchang University, Nanchang 330031, P. R. China.

出版信息

J Phys Chem Lett. 2024 Jul 25;15(29):7489-7495. doi: 10.1021/acs.jpclett.4c01691. Epub 2024 Jul 16.

Abstract

Halogen engineering offers a means of enhancing the physical properties of materials by fine-tuning the rotational energy barrier and dipole moment, which proved to be effective in achieving switchable phase transitions and optical responses in materials. In this work, by substituting the methyl group in ligand -ethyl-1,5-diazabicyclo[3.3.0]octane (CHCH-3.3.0-Dabco) with halogen atoms X (Cl or Br) and then contining to react it with FeBr in a HBr aqueous solution, we successfully synthesized three kinds of organic-inorganic hybrid switchable phase-change materials, [CHCH-3.3.0-Dabco]FeBr (), [ClCH-3.3.0-Dabco]FeBr (), and [BrCH-3.3.0-Dabco]FeBr (), which were fully characterized by single-crystal X-ray diffraction and variable-temperature powder X-ray diffraction. Compared to compound , compounds and show two pairs of reversible phase transitions, dielectric anomalies, and a second-harmonic-generation effect, which are successfully induced due to the halogen substitution. This study offers an effective molecular design strategy for the exploration and construction of iron halide organic-inorganic hybrid materials with temperature-adjustable physical properties.

摘要

卤素工程提供了一种通过微调旋转能垒和偶极矩来增强材料物理性能的方法,事实证明这对于实现材料中可切换的相变和光学响应是有效的。在这项工作中,我们通过用卤素原子X(Cl或Br)取代配体-乙基-1,5-二氮杂双环[3.3.0]辛烷(CHCH-3.3.0-Dabco)中的甲基,然后使其在氢溴酸水溶液中与FeBr继续反应,成功合成了三种有机-无机杂化可切换相变材料,[CHCH-3.3.0-Dabco]FeBr()、[ClCH-3.3.0-Dabco]FeBr()和[BrCH-3.3.0-Dabco]FeBr(),并通过单晶X射线衍射和变温粉末X射线衍射对其进行了全面表征。与化合物相比,化合物和显示出两对可逆相变、介电异常和二次谐波产生效应,这些都是由于卤素取代而成功诱导产生的。本研究为探索和构建具有温度可调物理性能的卤化铁有机-无机杂化材料提供了一种有效的分子设计策略。

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