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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Conductive cellulose nanofibrils-reinforced hydrogels with synergetic strength, toughness, self-adhesion, flexibility and adjustable strain responsiveness
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Conductive cellulose nanofibrils-reinforced hydrogels with synergetic strength, toughness, self-adhesion, flexibility and adjustable strain responsiveness

机译:导电纤维素纳米纤维增强水凝胶,具有协同强度,韧性,自粘,柔韧性和可调节应变反应性

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摘要

The development of biomass-based hydrogel conductive devices is a promising but challenging subject. Here, cellulose was used to develop a strong, tough, and self-adhesive conductive hydrogel by constructing a synergistic covalent cross-link network and multiple physical interactions. Tannic acid-coated cellulose nanofibrils (TA@CNFs), poly(acrylamide), and ferric ions (Fe3+) were introduced in a composite network by coordination and hydrogen bonds. The strategy of interpenetrating network endowed this hydrogel with high mechanical strength (storage modulus over 14 K Pa), and strong toughness and tensile strength (fracture stress up to 108 K Pa). Chelated Fe3+ by metal coordination as inorganic conductive phase leads to good electrical conductivity (conductivity up to 3.12 S m(-1)). The obtained hydrogel also exhibited fine flexibility, extensive self-adhesion, and adjustable strain responsiveness for monitoring human joint movements. This work provided a new approach to design conductive hydrogels, and also can expand the application of cellulose-reinforced materials in the sensor field.
机译:基于生物质的水凝胶导电装置的发展是一个有前途但具有挑战性的对象。这里,通过构建协同的共价交联网络和多种物理相互作用来使用纤维素来显影强,坚韧和自粘导电水凝胶。通过协调和氢键在复合网络中引入了单宁酸涂覆的纤维素纳米纤维(TA @ CNF),聚(丙烯酰胺)和铁离子(Fe3 +)。互穿网络的策略赋予该水凝胶,具有高机械强度(超过14kPa的储存模量),韧性强,抗拉强度(骨折应力高达108kPa)。用金属配位作为无机导电相的螯合Fe3 +导致良好的导电性(电导率高达3.12 s m(-1))。所获得的水凝胶还表现出可微柔韧性,广泛的自粘附性和可调节的应变反应,以监测人类关节运动。这项工作提供了一种新的设计导电水凝胶的方法,并且还可以扩大纤维素增强材料在传感器场中的应用。

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