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Rapid Accessible Fabrication and Engineering of Bilayered Hydrogels: Revisitingthe Cross-Linking Effect on Superabsorbent Poly(acrylic acid)

机译:双层水凝胶的快速可及制造与工程:再探交联剂对超吸收性聚丙烯酸的影响

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摘要

Superabsorbent hydrogels are significant not only in materials science but also in industries and daily life, being used in diapers or soil conditioners as typical examples. The main feature of these materials is their capacity to hold considerable amount of water, which is strongly dependent on the cross-linking density. This study focuses on the preparation of hydrogels by reweighing the effect of cross-linking density on physical properties, which provides green fabrication of bilayered hydrogels that consist of homogeneous structural motifs but show programmed responses via sequential radical polymerization. In particular, when two hydrogel layers containing different cross-linking densities are joined together, an integrated linear bilayer shows heterogeneous deformation triggered by water. We monitor the linear hydrogel bilayer bending into a circle and engineer it by incorporating disperse dyes, changing colors as well as physical properties. In addition, we demonstrate an electric circuit switch using a patterned hydrogel. Anisotropic shape change of the polyelectrolyte switch closesan open circuit and lights a light-emitting diode in red. This proposedfabrication and engineering can be expanded to other superabsorbentsystems and create smart responses in cross-linked systems for biomedicalor environmental applications.
机译:超吸收性水凝胶不仅在材料科学中而且在工业和日常生活中都具有重要意义,例如,尿布或土壤改良剂中都使用超吸收性水凝胶。这些材料的主要特征是它们容纳大量水的能力,这在很大程度上取决于交联密度。这项研究的重点是通过重新权衡交联密度对物理性能的影响来制备水凝胶,这提供了绿色制造双层水凝胶的方法,该双层水凝胶由均质的结构基序组成,但通过顺序的自由基聚合反应显示出程序化的响应。特别地,当将包含不同交联密度的两个水凝胶层连接在一起时,一体的线性双层显示出由水触发的异质变形。我们监测线性水凝胶双层弯曲成一个圆形,并通过掺入分散染料,改变颜色以及物理特性来对其进行工程设计。此外,我们演示了使用带图案的水凝胶的电路开关。聚电解质开关的各向异性形状变化闭合开路并用红色点亮发光二极管。这个提议制造和工程可以扩展到其他超吸收剂系统并在生物医学的交叉链接系统中创建智能响应或环境应用。

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