Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University, 1-2-1 Izumi-cho, Narashino, Chiba 275-8575, Japan.
Soft Matter. 2018 Feb 14;14(6):927-933. doi: 10.1039/c7sm01935a. Epub 2018 Jan 9.
This article addresses the generation of large mechanical forces in muscle-like isometric actuator systems composed of stimuli-responsive nanocomposite hydrogels (NC gels) and aqueous NaCl solutions. NC gels with poly(N-isopropylacrylamide)-clay (PNIPA-clay) network structures exhibit high mechanical toughnesses and reversible swelling/deswelling behavior in the absence/presence of NaCl. NC gels constrained to constant lengths in brine generate enhanced contractive forces due to the salt-induced coil-to-globule transitions that are more than ten times larger than those induced thermally. A retractive tensile force (4 N/170 kPa), comparable to that of human muscle, was repeatedly generated at 20 °C using an appropriately composed NC gel (clay: 2 mol%, PNIPA: 2 M), and by alternating the NaCl concentration between 0 and 5 M. This phenomenon is attributed to the combined effects of enhanced deswelling behavior resulting from the salt-induced coil-to-globule transition of PNIPA and the high stiffness of the deswollen gel due to the NaCl-strengthened PNIPA-clay network.
本文针对由刺激响应性纳米复合水凝胶(NC 凝胶)和 NaCl 水溶液组成的类似肌肉的等长执行器系统中产生的大机械力进行了研究。具有聚(N-异丙基丙烯酰胺)-粘土(PNIPA-粘土)网络结构的 NC 凝胶在不存在/存在 NaCl 的情况下表现出高机械韧性和可逆溶胀/收缩行为。在盐水中被限制在恒定长度的 NC 凝胶由于盐诱导的从线圈到球的转变而产生增强的收缩力,其幅度比热诱导的转变大十倍以上。使用适当组成的 NC 凝胶(粘土:2mol%,PNIPA:2M)并在 0 和 5M 之间交替 NaCl 浓度,在 20°C 下可重复产生 4N/170kPa 的回缩拉伸力,这与人类肌肉相当。这种现象归因于 PNIPA 盐诱导的从线圈到球的转变导致的增强的溶胀行为以及由于 NaCl 增强的 PNIPA-粘土网络导致的溶胀凝胶的高刚度的共同作用。