首页> 外文期刊>Journal of Applied Polymer Science >Synthesis of novel amphiphilic pH-sensitive polyurethane networks through water-in-oil soap-free emulsion polymerization process. I. Microstructural differences and swelling behaviors
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Synthesis of novel amphiphilic pH-sensitive polyurethane networks through water-in-oil soap-free emulsion polymerization process. I. Microstructural differences and swelling behaviors

机译:通过油包水无皂乳液聚合法合成新型两亲pH敏感型聚氨酯网络。一,微观结构差异和溶胀行为

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pH-sensitive amphiphilic networks are synthesized from urethane acrylate anionomer (UAA) precursor chains. The microstructures of these networks are very sensitive to the nature of and the amount of solvent used during crosslinking. Whereas dioxane forms relatively homogenous solution, water preferentially interacts with hydrophile segment of UAA chains, causing the microphase separation between hydrophilic moieties and hydrophobic main chains. This microphase separation was locked-in by crosslinking reaction, enhancing largely the hydrophilicity of UAA networks and the hydrophobic aggregation. The UAA gels, prepared with water (UAAG) and/or dioxane (UADG), exhibit quite different swelling behaviors in the same dissolution medium because of their completely different microstructures. The improved hydrophilicity of UAAG gels due to the hydrophilic/hydrophobic microphase separation is confirmed by measuring the contact angle to water. These microphase-separated hydrophilic domains on UAA gel matrix, which are observed by scanning electron microscopy measurement, influence the mechanical property of dried UAA gels as well. (C) 2000 John Wiley & Sons, Inc. [References: 44]
机译:pH敏感的两亲网络是由氨基甲酸酯丙烯酸酯阴离子单体(UAA)前驱体链合成的。这些网络的微观结构对交联过程中所用溶剂的性质和用量非常敏感。二恶烷形成相对均质的溶液,而水优先与UAA链的亲水链段相互作用,从而导致亲水部分和疏水主链之间发生微相分离。这种微相分离通过交联反应锁定,从而大大增强了UAA网络的亲水性和疏水性聚集。用水(UAAG)和/或二恶烷(UADG)制备的UAA凝胶由于完全不同的微观结构,在相同的溶出介质中表现出完全不同的溶胀行为。通过测量与水的接触角,可以确认由于亲水/疏水微相分离而导致的UAAG凝胶亲水性的提高。通过扫描电子显微镜测量观察到的,UAA凝胶基质上这些微相分离的亲水域也影响干燥的UAA凝胶的机械性能。 (C)2000 John Wiley&Sons,Inc. [参考:44]

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