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基于偶氮苯的光响应离子液体烷基链长度影响的理论研究

Theoretical study on the alkyl chain length impact of azobenzene-based photoresponsive ionic liquids.

作者信息

Ying Liyao, Ju Zhaoyang, Lin Chunjin, Wang Pin, Cheng Haixiang, Ding Liyong, Chu Tianshu, Gong Chunxiao, Zhou Bing, Yu Mengting, Ge Chengsheng

机构信息

College of Chemical and Material Engineering, Quzhou University, Quzhou, Zhejiang Province, 324000, China.

Zhejiang Geological Institute of Metallurgical Geology of China, Quzhou, Zhejiang Province, 324000, China.

出版信息

BMC Chem. 2025 Mar 10;19(1):66. doi: 10.1186/s13065-025-01433-1.

Abstract

The light-modulated isomerization and aggregation behavior of ionic liquids (ILs) in aqueous solutions holds fundamental and technological significance. Although several azobenzene-based photoresponsive ILs have been synthesized, there is still a lack of understanding regarding the aggregation mechanism, regularity of the alkyl chain length, and the position of the azobenzene (cis- and trans-) in these photoresponsive ILs. To elucidate the structure-property relationship of photoresponsive ILs, four types of azobenzene groups photosensitive ILs ([AzoCDMEA]Br, n = 2,4,6,10) in both trans- and cis- configurations were investigated by density functional theory (DFT) calculations. We investigated the geometric properties of cations, H-bonds interactions of ionic pairs, microstructures of clusters, and the interactions between ILs and water molecules. It was found that the molecular volume of cis- is smaller than that of trans- cation structures. Despite multiple H-bonds between the anions and the ammonium group of cations, longer alkyl chains weaken anion-cation interactions. The interaction energies of trans- n[AzoCDMEA]Br (1 ≤ n ≤ 4) clusters are stronger than those of cis-. Moreover, the interaction energy between trans-structures of photoresponsive ILs and water molecules is smaller than that of cis- structures based on the DFT calculations. The interaction energies per water molecule in the ILs-water clusters tend to saturation as the number of water molecules increases. The electrostatic interaction plays a crucial role in the stabilization of ILs and water systems. The structure-property relationship of photoresponsive ILs including the regularity of the alkyl chain length and the azobenzene position as well as the microscopic interaction mechanism of ILs and ILs-water clusters had been studied from theoretical calculation perspective. This work can contribute to an in-depth understanding of the microcosmic interactions of azobenzene-based photoresponsive ILs and aid in designing them in a "task-specific" way.

摘要

离子液体(ILs)在水溶液中的光调制异构化和聚集行为具有基础和技术意义。尽管已经合成了几种基于偶氮苯的光响应离子液体,但对于这些光响应离子液体的聚集机制、烷基链长度的规律以及偶氮苯(顺式和反式)的位置仍缺乏了解。为了阐明光响应离子液体的结构-性质关系,通过密度泛函理论(DFT)计算研究了四种反式和顺式构型的偶氮苯基团光敏离子液体([AzoCDMEA]Br,n = 2、4、6、10)。我们研究了阳离子的几何性质、离子对的氢键相互作用、簇的微观结构以及离子液体与水分子之间的相互作用。发现顺式阳离子结构的分子体积小于反式阳离子结构。尽管阴离子与阳离子的铵基团之间存在多个氢键,但较长的烷基链会削弱阴离子-阳离子相互作用。反式n[AzoCDMEA]Br(1≤n≤4)簇的相互作用能比顺式更强。此外,基于DFT计算,光响应离子液体的反式结构与水分子之间的相互作用能小于顺式结构。随着水分子数量的增加,离子液体-水簇中每个水分子的相互作用能趋于饱和。静电相互作用在离子液体和水体系的稳定中起着关键作用。从理论计算的角度研究了光响应离子液体的结构-性质关系,包括烷基链长度和偶氮苯位置的规律以及离子液体和离子液体-水簇的微观相互作用机制。这项工作有助于深入了解基于偶氮苯的光响应离子液体的微观相互作用,并有助于以“特定任务”的方式设计它们。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1df0/11895348/4641330e6335/13065_2025_1433_Sch1_HTML.jpg

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