Multifunctional bacterial cellulose-based organohydrogels with long-term environmental stability

极限抗拉强度 材料科学 标度系数 细菌纤维素 韧性 聚乙烯醇 纤维素 自愈水凝胶 复合材料 化学工程 高分子化学 医学 工程类 制作 病理 替代医学
作者
Wenyan Guo,Qi Yuan,Lingzhi Huang,Wei Zhang,Dandan Li,Chunli Yao,Ming‐Guo Ma
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:608: 820-829 被引量:28
标识
DOI:10.1016/j.jcis.2021.10.057
摘要

Sensitive strain sensors have attracted more attention due to their applications in health monitoring and human-computer interaction. However, the problems existing in conventional hydrogels, such as inherent brittleness, freezing at low temperature, low toughness, and water evaporation, have greatly hindered the practical applications. In order to solve the above problems, herein, we designed dual network multifunctionality organohydrogels using polyvinylpyrrolidone (PVP) and polyvinyl alcohol (PVA) covalent cross-linking polymer as the first network, the bacterial celluloses (BCs) and calcium chloride by ligand binding as the second network. The prepared organohydrogels showed good conductivity and sensitivity over a wide temperature range (-20 ∼ 40 ℃), and maintained long-term stability (>15 days) in the air. In addition, the dynamic combination of BCs-Ca2 + and hydrogen bonds in the binary system further endows the organohydrogels with excellent tensile strength (≈1.0 MPa), tensile strain (≈1300%), toughness (≈6.2 MJ m-3), conductivity (3.4 S m-1), gauge factor (≈1.24), adhesion (≈0.3 MPa), and self-healing properties (self-healing tensile strain to 632%). Therefore, this organohydrogel has potential candidates for flexible electronic skin, motion monitoring, and soft robotics.
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