Higaki Yuji, Kobayashi Motoyasu, Takahara Atsushi
Department of Integrated Science and Technology, Faculty of Science and Technology, Oita University, 700 Dannoharu, Oita 870-1192, Japan.
School of Advanced Engineering, Kogakuin University, Tokyo 192-0015, Japan.
Langmuir. 2020 Aug 11;36(31):9015-9024. doi: 10.1021/acs.langmuir.0c01672. Epub 2020 Jul 28.
Polyzwitterions have emerged as a new class of antifouling materials alternating poly(ethylene glycol). The exemplary biopassivation and lubrication behaviors are often attributed to the particular chemical structure of zwitterions, which involve a large dipole moment of the charged groups and a neutral net charge, while the hydration state and dynamics also associate with these characteristics. Polymer brushes composed of surface-tethered polyzwitterion chains produced by surface-initiated controlled radical polymerization have been developed as thin films which exhibit excellent antifouling and lubrication properties. In past decades, numerous studies have been devoted to examining the structure and dynamics of polyzwitterion brush chains in aqueous solutions. This feature article provides an overview of recent studies exploring the hydration state of polyzwitterion brushes with specular neutron reflectivity, highlights some newly published work on the nonuniform equilibrium structure, ion concentration dependence, ion specificity, and the effects of charge spacer length in the zwitterions, and discusses future perspective in this field.
聚两性离子已成为一类新型的替代聚乙二醇的防污材料。其典型的生物钝化和润滑行为通常归因于两性离子的特殊化学结构,两性离子包含带电基团的大偶极矩和中性净电荷,而水合状态和动力学也与这些特性相关。由表面引发的可控自由基聚合制备的表面 tethered 聚两性离子链组成的聚合物刷已被开发为具有优异防污和润滑性能的薄膜。在过去几十年中,大量研究致力于研究聚两性离子刷链在水溶液中的结构和动力学。这篇专题文章概述了最近利用镜面中子反射率探索聚两性离子刷水合状态的研究,突出了一些关于非均匀平衡结构、离子浓度依赖性、离子特异性以及两性离子中电荷间隔长度影响的新发表工作,并讨论了该领域的未来前景。