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Hydrogen-bonded layer-by-layer polymer films

机译:氢键层叠聚合物膜

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摘要

New developments in the area of hydrogen-bonded layer-by-layer assembly composed of weak polyelectrolytes are reviewed, with emphasis on self-assembly in an aqueous environment. Advances in fundamental understanding of polymer layering at surfaces are addressed. The effects of molecular weight of polymers, ionic strength, pH, and temperature on growth and post-self-assembly response of hydrogen-bonded films are summarized and contrasted with trends known for electrostatically assembled films. Deposition of hydrogen-bonded films onto particulate substrates and properties of produced capsules are discussed. Strategies to stabilize hydrogen-bonded multilayers at neutral and basic pH through crosslinking and response properties of produced ultrathin hydrogel films deposited onto flat substrates or comprising the wall of capsules are also described. The potential of hydrogen-bonding self-assembly in surface modification and functionalization, in construction of responsive functional containers and membranes, or as solid-state matrices demonstrating superior ion conductivity make these materials promising for future biomedical and device applications.
机译:综述了由弱聚电解质组成的氢键逐层组装领域的新发展,重点是在水性环境中的自组装。解决了在表面上聚合物分层的基本理解方面的进展。总结了聚合物的分子量,离子强度,pH和温度对氢键合薄膜的生长和自组装响应的影响,并与静电组装薄膜的已知趋势进行了对比。讨论了氢键合膜在颗粒状基材上的沉积以及制成的胶囊的性能。还描述了通过沉积在平坦基材上或包含胶囊壁的超薄水凝胶薄膜的交联和响应特性,在中性和碱性pH下稳定氢键多层的策略。氢键自组装在表面改性和功能化,响应性功能性容器和膜的构造中,或作为表现出优异离子传导性的固态基质的潜力,使这些材料有望在未来的生物医学和设备应用中发挥作用。

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