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首页> 外文期刊>ACS applied materials & interfaces >Multiple-Responsive and Amphibious Hydrogel Actuator Based on Asymmetric UCST-Type Volume Phase Transition
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Multiple-Responsive and Amphibious Hydrogel Actuator Based on Asymmetric UCST-Type Volume Phase Transition

机译:基于不对称UCST型体积相变的多响应和两栖水凝胶执行器

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摘要

Thermoresponsive hydrogel actuators have attracted tremendous interest due to their promising applications in artificial muscles, soft robotics, and flexible electronics. However, most of these materials are based on polymers with lower critical solution temperature (LCST), while those from upper critical solution temperature (UCST) are rare. Herein, we report a multiple-responsive UCST hydrogel actuator based on the complex of poly(acrylic acid) (PAAc) and poly(acrylamide) (PAAm). By applying a heterogeneous photopolymerization, a bilayer hydrogel was obtained, including a layer of the interpenetrating network (IPN) of PAAm/PAAc and a layer of a single network of PAAm. When cooled down below the UCST, the PAAm/PAAc layer contracted due to the hydrogen bonding of the two polymers while the PAAm layer stays in swelling state, driving the hydrogel to curl. By adjusting the composition of the two layers, the amplitude of actuation behavior could be regulated. By creating patterned IPN domains with photomasks, the hydrogel could deform into complex two-dimensional (2D) and three-dimensional (3D) shapes. An active motion was realized in both water and oil bath, thanks to the internal water exchange between the two layers. Interestingly, the hydrogel actuator is also responsive to urea and salts (Na_(2)SO_(4), NaCl, NaSCN), due to that the strength of the hydrogen bonds in the IPN changes with the additives. Overall, the current study realized an anisotropic UCST transition by introducing asymmetrically distributed polymer–polymer hydrogen bonds, which would inspire new inventions of intelligent materials.
机译:由于其在人工肌肉,软机器人和柔性电子产品中的有前途的应用,热响应性水凝胶执行器引起了巨大的兴趣。然而,大多数这些材料基于具有较低临界溶液温度(LCST)的聚合物,而来自上临界溶液温度(UCST)的那些是罕见的。在此,我们报告基于聚(丙烯酸)(PAAC)和聚(丙烯酰胺)(Paam)的复合物的多响应UCST水凝胶致动器。通过施加异质光聚合,获得双层水凝胶,包括Paam / Paac的互穿网络(IPN)的层和一层持续的Paam网络。当在UCST下方冷却时,由于两种聚合物的氢键而收缩的PAAM / PAAC层,同时Paam层保持溶胀状态,驱动水凝胶以卷曲。通过调节两层的组成,可以调节致动行为的幅度。通过使用光掩模创建图案的IPN域,水凝胶可以变形到复杂的二维(2D)和三维(3D)形状中。由于两层之间的内部水交换,在水和油浴中实现了活跃的运动。有趣的是,由于IPN中的氢键在IPN中的氢键与添加剂变化的强度,水凝胶致动器也响应于尿素和盐(Na_(2)SO_(4),NaCl,Nascn)。总体而言,目前通过引入不对称分布的聚合物 - 聚合物氢键来实现各向异性UCST过渡,这将激发智能材料的新发明。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2019年第46期|共8页
  • 作者单位

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Ningbo Key Laboratory of Specialty Polymers School of Materials Science Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Ningbo Key Laboratory of Specialty Polymers School of Materials Science Chemical Engineering Ningbo University;

    Ningbo Institute of Material Technology and Engineering Chinese Academy of Sciences;

    Ningbo Institute of Material Technology and Engineering Chinese Academy of Sciences;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Ningbo Key Laboratory of Specialty Polymers School of Materials Science Chemical Engineering Ningbo University;

    State Key Laboratory Base of Novel Functional Materials and Preparation Science Ningbo Key Laboratory of Specialty Polymers School of Materials Science Chemical Engineering Ningbo University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    hydrogel actuator; interpenetrating network; UCST polymer; hydrogen bond; volume phase transition; Hofmeister effect; patterned hydrogel;

    机译:水凝胶致动器;互穿网络;UCST聚合物;氢键;体积相转变;HofMeister效果;图案水凝胶;

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