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Effect of Nanofibrillated Cellulose Content on the Temperature and Near Infrared Responses of Polyvinyl Butyral Nanofibers-Containing Bilayer Hydrogel System

机译:纳米纤化纤维素含量对含聚乙烯丁醛纳米纤维水凝胶系统的温度及近红外反应的影响

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A novel kind of nanofibrillated cellulose (NFC) reinforced polyvinyl butyral (PVB) nanofibers-containing bilayer hydrogel system was successfully fabricated via the combination of a one-step, in-situ, free radical polymerization and electrospinning. The hydrogel owned high mechanical strength, thermoresponsive, and near infrared bending/unbending properties. The cross-linking density of hydrogels enhanced along with the increase of NFC content. The addition of NFC and PVB nanofibers presented tiny influence on the variation of chemical bond and volume phase transition temperature. The combination between NFC and PVB nanofibers enhanced the mechanical strength and decreased the strain value, which built the base for high bonding strength of two layers and efficient thermoresponsive and near infrared responses. With the increase of NFC content, the bending degree became smaller. The bilayer hydrogel dimensions affected the deformation degree. Bilayer hydrogels with different NFC content own different deformation abilities, which can be designed as different parts of soft actuators and provide superior performance to satisfy various practical application demands.
机译:一种新颖的纳米纤胺纤维素(NFC)增强聚乙烯丁醛(PVB)含含含含纳米纤维的双层水凝胶系统,通过单步,原位,自由基聚合和静电纺丝成功制造。水凝胶拥有高机械强度,热敏性和近红外弯曲/不平衡性能。随着NFC含量的增加,水凝胶的交联密度增强。添加NFC和PVB纳米纤维对化学键和体积相转变温度的变化产生了微小的影响。 NFC和PVB纳米纤维之间的组合增强了机械强度并降低了应变值,这为高粘接强度的两个层和有效的热响应和近红外反应构成了基座。随着NFC含量的增加,弯曲度变小。双层水凝胶尺寸影响变形程度。具有不同NFC含量的双层水凝胶具有不同的变形能力,可设计为软致动器的不同部件,提供卓越的性能,以满足各种实际应用需求。

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