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Supramolecular ionic polymer/carbon nanotube composite hydrogels with enhanced electromechanical performance

机译:超分子离子聚合物/碳纳米管复合水凝胶,具有增强的机电性能

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摘要

Electroactive hydrogels have received increasing attention due to the possibility of being used in biomimetics, such as for soft robotics and artificial muscles. However, the applications are hindered by the poor mechanical properties and slow response time. To address these issues, in this study, supramolecular ionic polymer–carbon nanotube (SIPC) composite hydrogels were fabricated via in situ free radical polymerization. The polymer matrix consisted of carbon nanotubes (CNTs), styrene sulfonic sodium (SSNa), β-cyclodextrin (β-CD)-grafted acrylamide, and ferrocene (Fc)-grafted acrylamide, with the incorporation of SSNa serving as the ionic source. On applying an external voltage, the ions accumulate on one side of the matrix, leading to localized swelling and bending of the structure. Therefore, a controllable and reversible actuation can be achieved by changing the applied voltage. The tensile strength of the SIPC was improved by over 300%, from 12 to 49 kPa, due to the reinforcement effect of the CNTs and the supramolecular host–guest interactions between the β-CD and Fc moieties. The inclusion of CNTs not only improved the tensile properties but also enhanced the ion mobility, which lead to a faster electromechanical response. The presented electro-responsive composite hydrogel shows a high potential for the development of robotic devices and soft smart components for sensing and actuating applications.
机译:电活性水凝胶已受到越来越多的关注,因为在仿生,如软机器人和人造肌肉中使用的可能性。但是,应用程序是由机械性能差,响应时间慢的阻碍。为了解决这些问题,在本研究中,超分子离子聚合物 - 碳纳米管(SIPC)复合水凝胶通过原位自由基聚合制造。聚合物基体由碳纳米管(CNT),苯乙烯磺酸钠(SSNa),β环糊精(β-CD) - 接枝丙烯酰胺,二茂铁和(Fc)的接枝的丙烯酰胺,用SSNa的作为离子源的掺入。上施加外部电压时,离子积累在基质的一侧,导致局部肿胀和结构的弯曲。因此,可控和可逆的致动可以通过改变所施加的电压来实现。该SIPC的拉伸强度超过300%的提高,从12到49千帕,由于CNT的增强效果和β-CD和Fc部分之间的超分子主 - 客体相互作用。 CNT的夹杂物不仅改善了拉伸性能也增强了离子迁移率,这导致更快的响应机电。对于机器人装置和用于感测和致动的应用软智能组件的开发所呈现的电响应合成的水凝胶表现出高的电势。

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