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Nondestructive light-initiated tuning of layer-by-layer microcapsule permeability

机译:逐层微胶囊渗透性的无损光引发调节

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摘要

A nondestructive way to achieve remote, reversible, light-controlled tunable permeability of ultrathin shell microcapsules is demonstrated in this study. Microcapsules based on poly{[2-(methacryloyloxy)ethyl] trimethylammonium iodide} (PMETAI) star polyelectrolyte and poly(sodium 4-styrenesulfonate) (PSS) were prepared by a layer-by-layer (LbL) technique. We demonstrated stable microcapsules with controlled permeability with the arm number of a star polymer having significant effect on the assembly structure: the PMETAI star with 18 arms shows a more uniform and compact assembly structure. We observed that in contrast to regular microcapsules from linear polymers, the permeability of the star polymer microcapsules could be dramatically altered by photoinduced transformation of the trivalent hexacyanocobaltate ions into a mixture of mono- and divalent ions by using UV irradiation. The reversible contraction of PMETAI star polyelectrolyte arms and the compaction of star polyelectrolytes in the presence of multivalent counterions are considered to cause the dramatic photoinduced changes in microcapsule properties observed here. Remarkably, unlike the current mostly destructive approaches, the light-induced changes in microcapsule permeability are completely reversible and can be used for light-mediated loading/unloading control of microcapsules.
机译:在这项研究中展示了一种实现超薄壳微胶囊远程,可逆,光控可调通透性的非破坏性方法。通过逐层(LbL)技术制备了基于聚{[2-(甲基丙烯酰氧基氧基)乙基]三甲基碘化铵}(PMETAI)星形聚电解质和聚(4-苯乙烯磺酸钠)(PSS)的微胶囊。我们展示了稳定的微胶囊,具有可控的渗透性,星形聚合物的臂数对组装结构有重大影响:具有18个臂的PMETAI星形膜显示出更均匀,紧凑的组装结构。我们观察到,与来自线性聚合物的常规微胶囊相反,星形聚合物微胶囊的渗透性可以通过使用紫外线辐射将三价六氰基钴酸根离子光诱导转化为单价和二价离子的混合物而显着改变。 PMETAI星型聚电解质臂的可逆收缩和多价抗衡离子存在下星型聚电解质的压缩被认为引起了此处观察到的微胶囊性质的剧烈光诱导变化。值得注意的是,与当前大多数破坏性方法不同,光诱导的微囊通透性变化是完全可逆的,可用于光介导的微囊装载/卸载控制。

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