Kowalczuk Joanna, Demchuk Oleg M, Borkowski Mariusz, Bielejewski Michał
Institute of Molecular Physics, Polish Academy of Sciences, M. Smoluchowskiego 17, 60-179 Poznań, Poland.
Faculty of Medicine, The John Paul II Catholic University of Lublin, 20-708 Lublin, Poland.
Molecules. 2025 Apr 4;30(7):1613. doi: 10.3390/molecules30071613.
Designing supramolecular gelators with targeted properties is very difficult and mainly relies on structural modifications of known gelator molecules. However, very often, even minor modifications can result in the complete loss of gelation capabilities. In the present work, we have studied the influence and role of the silver nanoparticles (AgNPs) and trisodium citrate (TSC) additives on the self-assembly process of alanine derivative gelator (CAla) and intermolecular interactions resulting in hydrogel systems of enhanced stability and sustainability. The effect of phase separation and diversity of supramolecular microstructures of gelator internal matrix on the composition of the investigated tricomponent system was studied thoroughly with thermal analysis methods (TGA/DSC), high-resolution nuclear magnetic resonance spectroscopy (HR-MAS NMR), and polarising optical microscopy (POM). The molecular mechanism of gelation and the interactions responsible for enhanced properties of nanosilver hydrogels was determined and described, indicating the synergistic role of TSC and AgNPs in the self-assembly process.
设计具有特定性质的超分子凝胶因子非常困难,且主要依赖于对已知凝胶因子分子的结构修饰。然而,很多时候,即使是微小的修饰也可能导致凝胶化能力完全丧失。在本研究中,我们研究了银纳米颗粒(AgNPs)和柠檬酸三钠(TSC)添加剂对丙氨酸衍生物凝胶因子(CAla)自组装过程的影响及作用,以及导致水凝胶体系稳定性和可持续性增强的分子间相互作用。通过热分析方法(TGA/DSC)、高分辨率核磁共振光谱(HR-MAS NMR)和偏光光学显微镜(POM),深入研究了凝胶因子内部基质的相分离和超分子微观结构多样性对所研究的三元体系组成的影响。确定并描述了凝胶化的分子机制以及纳米银水凝胶性能增强所涉及的相互作用,表明TSC和AgNPs在自组装过程中的协同作用。