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A typical diffusion monitored by flow cytometry: slow diffusion of small molecules in polyelectrolyte multilayers

机译:一个典型的扩散通过流式细胞仪监测:缓慢的小分子的扩散聚电解质多层膜

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An innovative approach has been developed to measure small molecule diffusion in polyelectrolyte multilayers (PEMs) assembled on colloidal particles by means of flow cytometry (FACS). FACS allows changes in fluorescence emission as a function of time to be recorded per particle in a colloidal dispersion. Dithionite, S2O42, diffusion in PEMs composed of polyallylamine hydrochloride (PAH) and poly styrene sulfonate (PSS) assembled on silica particles has been studied by recording the quenching of (7-nitrobenz-2-oxa-1,3-diazol-4yl)amino (NBD) labelled PAH layers by FACS. NBD is reduced when it encounters dithionite, and is therefore no longer fluorescent. The decay in fluorescence will be used to follow the kinetics of dithionite diffusion. The fluorescence decay curves show slow diffusion that does not follow classical Fickean law. However, by assuming that the diffusion coefficient is time dependent and follows an inverse power law in an atypical diffusion case, it was possible to obtain an excellent fit for the decay curves.
机译:一个创新的方法了测量小分子扩散聚电解质多层膜(到聚合物)组装胶体粒子通过流式细胞术(流式细胞仪)。排放记录/作为时间的函数胶态分散体粒子。S2O42,扩散到聚合物组成的polyallylamine盐酸盐(多环芳烃)和聚苯乙烯磺酸钠(PSS)装配在二氧化硅粒子已经研究了记录淬火的通过流式细胞仪贴上PAH层。它遇到亚硫酸氢,因此没有长的荧光。将用于亚硫酸氢的动力学扩散。缓慢扩散,不遵循古典Fickean法律。扩散系数是与时间有关的是一个典型的逆幂律获得一个扩散的情况下,这是可能的优秀的适合的衰减曲线。

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