超分子化学
自组装
分子
树枝状大分子
纳米技术
软质材料
材料科学
超分子组装
共价键
溶剂
化学
高分子化学
有机化学
作者
Alexandra Croitoriu,Aurica P. Chiriac,Alina Gabriela Rusu,Alina Ghilan,Diana Ciolacu,Iuliana Stoica,Loredana E. Niţă
出处
期刊:Gels
[Multidisciplinary Digital Publishing Institute]
日期:2023-11-09
卷期号:9 (11): 886-886
被引量:3
摘要
Low-molecular-weight gelators (LMWGs) are compounds with an intrinsic tendency to self-assemble forming various supramolecular architectures via non-covalent interactions. Considering that the development of supramolecular assemblies through the synergy of molecules is not entirely understood at the molecular level, this study introduced a Fmoc-short peptide and four Fmoc-amino acids as building blocks for the self-assembly/co-assembly process. Hence, we investigated the formation of supramolecular gels starting from the molecular aggregation following two triggering approaches: solvent/co-solvent method and pH switch. The complex morphological analysis (POM, AFM, and STEM) offered an insight into the spontaneous formation of well-ordered nanoaggregates. Briefly, POM and AFM images demonstrated that self-assembled gels present various morphologies like dendrimer, spherulite, and vesicle, whereas all co-assembled supramolecular systems exhibit fibrillar morphologies as a result of the interaction between co-partners of each system. STEM study has confirmed that the molecules interact and join together, finally forming a fibrous network, an aspect seen in both self-assembled and co-assembled gels. XRD allowed the determination of the molecular arrangement. The study emphasized that the Fmoc motif protected the amino groups and facilitated gelation through additional π-π interactions.
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