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具有金属配位络合物和氢键双重物理交联网络的集成功能高强水凝胶。

Integrated Functional High-Strength Hydrogels with Metal-Coordination Complexes and H-Bonding Dual Physically Cross-linked Networks.

机构信息

Hubei Provincial Key Laboratory of Green Materials for Light Industry, Hubei University of Technology, Wuhan, 430068, P. R. China.

Collaborative Innovation Center of Green Light-Weight Materials and Processing, Hubei University of Technology, Wuhan, 430068, P. R. China.

出版信息

Macromol Rapid Commun. 2018 Dec;39(23):e1800400. doi: 10.1002/marc.201800400. Epub 2018 Aug 12.

Abstract

With the deepening of research on high-strength hydrogels, the multi-functional study of hydrogels has become a hot spot. In this paper, a dual cross-linked physical high-strength hydrogels is prepared by a relatively simple method. 2-Vinyl- 4,6-Diamino-2-vinyl-1,3,5-triazine (VDT) induces the formation of the first cross-linking points through the interaction of hydrogen bonds with poly(acrylamide-co-acrylic acid) (PAm-co-Ac) chains, then the secondary physical cross-linkers Fe that introduce ionic coordinates between Fe and -COO groups. Due to the synergistic effect of hydrogen bonding and ionic coordination, hydrogels possess high tensile strength (approx. 4.34 MPa), large elongation (approx. 17.64 times), and good healing properties under alkali solution after cutting into two pieces. Meanwhile, VDT contains diaminotriazine functional groups that easily form hydrogen bonds so that the polymer of hydrogels could absorb 5-fluorouridine. In addition, the contribution of ionic polymer segments enables pH to be sensitive to hydrogels and facilitates the adsorption of a large number of ionic monomers to form ionic conductive networks, the prepared hydrogel capacitor device has very high sensitivity to pressure and deformation, and can detect the movement behavior of the human body. The dual-physical cross-linked hydrogels had a selective adsorption to biological small molecules and could be assembled into a flexible wearable device with high sensitivity.

摘要

随着对高强度水凝胶研究的深入,水凝胶的多功能研究已成为热点。本文采用相对简单的方法制备了一种双重交联的物理高强度水凝胶。2-乙烯基-4,6-二氨基-2-乙烯基-1,3,5-三嗪(VDT)通过氢键与聚(丙烯酰胺-co-丙烯酸)(PAm-co-Ac)链相互作用诱导形成第一个交联点,然后将引入离子坐标的二级物理交联剂 Fe 通过 Fe 和 -COO 基团之间的离子配位。由于氢键和离子配位的协同作用,水凝胶具有较高的拉伸强度(约 4.34 MPa)、较大的伸长率(约 17.64 倍)和良好的愈合性能,在切成两块后在碱溶液中。同时,VDT 含有容易形成氢键的三嗪官能团,使水凝胶聚合物能够吸收 5-氟尿嘧啶。此外,离子聚合物段的贡献使水凝胶对 pH 值敏感,并有利于大量离子单体的吸附形成离子导电网络,所制备的水凝胶电容器装置对压力和变形具有非常高的灵敏度,并可以检测人体的运动行为。双重物理交联水凝胶对生物小分子具有选择性吸附作用,并可组装成具有高灵敏度的柔性可穿戴设备。

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