A systematic study on Zn(II)-Iminocarboxyl complexation applied in supramolecular PDMS networks

动态力学分析 超分子化学 弹性体 材料科学 滴定法 高分子化学 化学计量学 离解(化学) 流变学 水溶液中的金属离子 价(化学) 化学 物理化学 金属 分子 有机化学 聚合物 复合材料
作者
Jiaheng Mo,Weijian Wu,Shijie Shan,Xionghui Wu,Danni Li,Rui Li,Yaling Lin,Anqiang Zhang
出处
期刊:Polymer [Elsevier BV]
卷期号:250: 124896-124896 被引量:16
标识
DOI:10.1016/j.polymer.2022.124896
摘要

Metal-ligand coordination was used to construct supramolecular elastomers with self-healing ability and excellent mechanical properties. In this study, novel iminocarboxyl-functionalized polysiloxanes (PDMS-Iminocarboxyl) was synthesized through amine-functionalized polysiloxanes (PDMS-NH 2 ) with acrylic acid by aza-Michael addiction based on 1 H NMR and FTIR spectroscopy. The incorporation of zinc ions into the PDMS-Iminocarboxyl as chemical crosslinks could essentially improve the thermal and mechanical properties because of highly dynamic Zn(II)-iminocarboxyl complexation. The stoichiometric ratio of [Zn 2+ ]/[COOH] were determined by NMR titration. Furthermore, the presence of dynamic Zn(II)-iminocarboxyl equilibrium could allow a degree of strain sensitivity upon various stretching rates based on tensile experiments and rheological analysis. From the DMA and rheological analysis, modulus transition of PDMS-Iminocarboxyl@Zn x networks was closely related to the association-dissociation of Zn(II)-iminocarboxyl complexation. Besides, DFT calculations further provided the optimized configuration of metal-ligand complex according to the bond-valence-bond-length correlations. • Supramolecular polysiloxanes elastomers are prepared by integration of Zn 2+ in PDMS-Iminocarboxyl. • Dynamic reversible Zn(II)-iminocarboxyl complexation contributed to self-healing and reprocessing ability. • Achieving comprehensive mechanical properties, including tensile toughness up to 45.4 MJ/m 3 . • Density functional theory (DFT) calculations revealed the optimized configuration.
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