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由聚乙烯亚胺和多金属氧酸盐引发的超分子发光铜纳米簇水凝胶的手性反转与恢复

Chiral Inversion and Recovery of Supramolecular Luminescent Copper Nanocluster Hydrogels Triggered by Polyethyleneimine and Polyoxometalates.

作者信息

Li Shulin, Zhang Shanshan, Feng Ning, Zhang Na, Zhu Yu, Liu Yuhao, Wang Wenjuan, Xin Xia

机构信息

National Engineering Research Center for Colloidal Materials, Key Laboratory of Colloid and Interface Chemistry (Ministry of Education), School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, China.

出版信息

ACS Appl Mater Interfaces. 2022 Nov 23;14(46):52324-52333. doi: 10.1021/acsami.2c16428. Epub 2022 Nov 3.

Abstract

Construction of controllable chiroptical supramolecular luminescence systems is of great significance for developing intelligent chiral luminescence materials with precise and effective regulation and understanding chirality-switching phenomena in biological systems, which has attracted extensive attention. Because chiral metal nanoclusters (NCs) can provide facilities for the study of nanoscale chiral effects, in this study, we select chiral glutathione-stabilized copper NCs (G-SH-Cu NCs) to construct a supramolecular luminescent hydrogel with achiral branched polyethyleneimine (PEI) and polyoxometalates [Na(EuWO)·32HO, denoted as EuW]. Thus, a chiral property precise controlled system was constructed by self-assembly. Interestingly, the addition of PEI to G-SH-Cu NC solution induced the formation of luminescent hydrogels with chiral inversion, while further addition of EuW not only enhanced the luminescence of the hydrogel but also recovered the chiroptical properties. The chiral inversion behavior is possibly ascribed to the hydrogen bond interaction/electrostatic interaction between G-SH-Cu NCs and PEI in the chiral inversion process, while the competition of hydrogen bonding interaction (between G-SH-Cu NCs and PEI) and electrostatic interaction (between PEI and EuW) was accountable for the chiral recovery process. Manipulation of chirality inversion in the metal NC-containing coassemblies is rare, while this work establishes a feasible strategy to modulate the chiral inversion behavior of Cu NCs, which not only produces new physicochemical properties of metal NCs through synergistic behavior but also offers a feasible way to realize the potential application of chiroptical materials.

摘要

构建可控的手性光超分子发光系统对于开发具有精确有效调控的智能手性发光材料以及理解生物系统中的手性转换现象具有重要意义,这已引起广泛关注。由于手性金属纳米团簇(NCs)可为纳米级手性效应的研究提供便利,在本研究中,我们选择手性谷胱甘肽稳定的铜纳米团簇(G-SH-Cu NCs)与非手性支化聚乙烯亚胺(PEI)和多金属氧酸盐[Na(EuWO)·32HO,记为EuW]构建超分子发光水凝胶。因此,通过自组装构建了一个手性性质精确可控的系统。有趣的是,向G-SH-Cu NC溶液中添加PEI会诱导形成具有手性反转的发光水凝胶,而进一步添加EuW不仅增强了水凝胶的发光,还恢复了手性光性质。手性反转行为可能归因于手性反转过程中G-SH-Cu NCs与PEI之间的氢键相互作用/静电相互作用,而氢键相互作用(G-SH-Cu NCs与PEI之间)和静电相互作用(PEI与EuW之间)的竞争则是手性恢复过程的原因。在含金属NC的共组装体中操纵手性反转很少见,而这项工作建立了一种可行的策略来调节Cu NCs的手性反转行为,这不仅通过协同行为产生了金属NCs的新物理化学性质,还为实现手性光材料的潜在应用提供了一种可行的方法。

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