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基于双吡啶配体形成的超分子凝胶的热力学和力学性质构建了一个协同模型。

Thermodynamic and mechanical properties of supramolecular gel based on bisterpyridine ligand formed a cooperative model.

作者信息

Park Yumi, Nam Minju, Jung Jong Hwa

机构信息

Department of Chemistry, Gyeongsang National University (GNU) Jinju 52828 Republic of Korea

Research Institute of Advanced Chemistry, Gyeongsang National University (GNU) Jinju 52828 Republic of Korea.

出版信息

RSC Adv. 2025 Aug 22;15(36):29972-29977. doi: 10.1039/d5ra03512k. eCollection 2025 Aug 18.

Abstract

Supramolecular gels hold immense potential in materials science, particularly in the development of functional materials for optoelectronics, sensors, and soft robotics. Their tunable mechanical properties and hierarchical self-assembly facilitate precise control over material structures and functions. Herein, we present a comprehensive study of the photophysical and mechanical properties of a supramolecular gel derived from a bisterpyridine ligand. The bisterpyridine ligand 1, incorporating alanine moieties as chiral units, was successfully synthesized. Notably, 1 exhibited gelation in aromatic solvents such as toluene and xylene, forming a supramolecular gel with a distinctive twisted fiber morphology. The heating and cooling curves exhibited non-sigmoidal shapes, indicating that supramolecular gel 1 prepared in toluene, was formed a cooperative mechanism. The Gibbs free energy was calculated to be -32.82 kcal mol. Furthermore, supramolecular gel 1 displayed strong blue emission, highlighting its potential for optoelectronic applications. The mechanical properties of 1 were investigated rheometry, revealing a pronounced thixotropic behavior, indicative of a reversible gelation process. These findings underscore the adaptability and multifunctionality of supramolecular gel 1, making it a promising candidate for advanced material applications.

摘要

超分子凝胶在材料科学中具有巨大潜力,尤其是在用于光电子学、传感器和软机器人技术的功能材料开发方面。它们可调节的机械性能和分级自组装有助于对材料结构和功能进行精确控制。在此,我们对一种源自双吡啶配体的超分子凝胶的光物理和机械性能进行了全面研究。成功合成了含有丙氨酸部分作为手性单元的双吡啶配体1。值得注意的是,1在甲苯和二甲苯等芳香族溶剂中表现出凝胶化,形成了具有独特扭曲纤维形态的超分子凝胶。加热和冷却曲线呈现非S形,表明在甲苯中制备的超分子凝胶1是通过协同机制形成的。计算出吉布斯自由能为 -32.82 kcal/mol。此外,超分子凝胶1表现出强烈的蓝色发射,突出了其在光电子应用方面的潜力。通过流变学研究了1的机械性能,揭示出明显的触变行为,表明这是一个可逆的凝胶化过程。这些发现强调了超分子凝胶1的适应性和多功能性,使其成为先进材料应用的有前途的候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3da7/12377249/4d27f1e93120/d5ra03512k-f1.jpg

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