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Supramolecular interaction controlled diffusion mechanism and improved mechanical behavior of hybrid hydrogel systems of zwitterions and cnt

机译:两性离子与cnt杂化水凝胶体系的超分子相互作用控制扩散机理和改善的力学行为

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Hybrid hydrogels of poly(N-isopropylacrylamide) (pNIPAM) containing carboxylate carbon nanotubes (CNTs) and/or zwitterions are synthesized by free radical polymerization. The supramolecular interactions among zwitterionic monomers and CNTs influence the mechanical properties and diffusion mechanism in hybrid hydrogel systems. These supramolecular interactions and response behavior of hybrid hydrogels were tested mechanically and with respect to their swelling characteristics. Hybrid hydrogels of pNIPAM and CNT or pNIPAM, zwitterions, and CNT follow a Fickian diffusion behavior, while adding zwitterions leads to an anomalous triple-stage swelling behavior and stiffening of the gel due to the interactions of the zwitterions with each other, which significantly increase the viscous dissipation and change the microscopic structure. While CNT itself stiffens the gel and slightly increases the diffusion speed, it complexes zwitterions, which leads to a novel property profile that is both potentially antibiotic and electrically conductive. CNT affords a relaxation process at long relaxation times, while zwitterion attachment and detachment lead to dissipation predominantly at high frequencies. Dynamic rheological measurements were performed during swelling of these complex materials.
机译:通过自由基聚合合成包含羧酸碳纳米管(CNT)和/或两性离子的聚(N-异丙基丙烯酰胺)(pNIPAM)杂化水凝胶。两性离子单体与CNT之间的超分子相互作用影响了杂化水凝胶体系的机械性能和扩散机理。对杂化水凝胶的这些超分子相互作用和响应行为进行了机械测试,并测试了其溶胀特性。 pNIPAM和CNT或pNIPAM,两性离子和CNT的混合水凝胶遵循Fickian扩散行为,而添加两性离子会导致异常的三阶段溶胀行为,并且由于两性离子彼此之间的相互作用而导致凝胶变硬,从而显着增加粘性耗散并改变微观结构。尽管CNT本身使凝胶变硬并略微增加了扩散速度,但它使两性离子络合,这导致了潜在的抗生素和导电性的新型特性。 CNT在较长的弛豫时间提供弛豫过程,而两性离子的附着和分离主要导致在高频下的耗散。在这些复杂材料的溶胀过程中进行了动态流变学测量。

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