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首页> 外文期刊>ACS applied materials & interfaces >Stimuli Responsive, Self-Sustainable, and Self-Healable Functionalized Hydrogel with Dual Gelation, Load-Bearing, and Dye-Absorbing Properties
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Stimuli Responsive, Self-Sustainable, and Self-Healable Functionalized Hydrogel with Dual Gelation, Load-Bearing, and Dye-Absorbing Properties

机译:刺激响应,自我可持续性和自我治疗的功能化水凝胶,具有双凝胶化,承载和染料吸收性能

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The motivation for designing low-molecular-weight gelators with self healing characteristics originates from elegant examples in biology such as vines of the genus Aristolochia whose internal secondary growth exhibits rapid self-healing in their stems. In the present work, we had explored the stimuli-responsive dual gelation characteristics for the ester-functionalized surfactant (4-(2-(hexadecyloxy)-2-oxoethyl)-4-methylmorpholin-4-ium bromide, C(16)EMorphBr) in aqueous medium at 7.20% (w/v) critical gel concentration and pH 7.4. The hydrogel provides an excellent platform to study dynamic phase behavior within a supramolecular network as it exhibits transformation from a fibrillar opaque hydrogel to a transparent hydrogel upon heating. Molecular interactions, arrangement within the supramolecular framework, and mechanical properties of the hydrogels were characterized using Fourier transform infrared, small-angle neutron scattering, rheological analysis, and tensile strength and cyclic loading-unloading tests. The fibrillar opaque gel has been characterized for its morphology using scanning electron microscopy, field emission scanning electron microscopy, transmission electron microscopy, and atomic force microscopy. The self-sustained, self-healable porous fibrillar opaque xerogel was further explored for selectively absorbing anionic dyes and for its load-bearing characteristics. We conclude a perspective on designing a new-age gelator that can open entirely new avenues in environmental protection and wearable "smart" devices.
机译:设计具有自愈合特性的低分子量凝胶器的动机来自生物学中的优雅实例,例如毒物色属的葡萄藤,其内部二次生长在其茎中表现出快速的自我愈合。在本作工作中,我们探索了酯官能化表面活性剂的刺激响应性双凝胶化特性(4-(2-(十六烷氧基)-2-氧乙基)-4-甲基丙酮蛋白-4-Ium溴化物,C(16)eMOLBR )在7.20%(w / v)临界凝胶浓度和pH 7.4的水性培养基中。水凝胶提供了一种优异的平台,用于研究超分子网络内的动态相行为,因为它在加热时表现出从纤维状不透明水凝胶到透明水凝胶的转化。分子相互作用,超分子框架内的布置,以及水凝胶的机械性能,用傅里叶变换红外,小角中子散射,流变分析和拉伸强度和循环加载卸载试验。使用扫描电子显微镜,现场发射扫描电子显微镜,透射电子显微镜和原子力显微镜,其特征在于其形态。进一步探索自我持续的自我恢复的多孔纤维状透明Xerogel,用于选择性地吸收阴离子染料和其承载特性。我们在设计一个新的凝胶炉的角度下,可以在环保和可穿戴的“智能”设备中完全开放新的途径。

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