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Easily tunable membrane thickness of microcapsules by using a coordination assembly on the liquid-liquid interface

机译:通过在液-液界面上使用配位组件,可轻松调节微胶囊的膜厚度

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A model solvent, 1,3,5-trimethylbenzene, was encapsulated using coordination assembly between metal ions and tannic acid to reveal the deposition of coordination complexes on the liquid-liquid interface. The deposition was confirmed by zeta potential, energy dispersive spectroscopy and X-ray photoelectron spectroscopy. Scanning electron microscopy and transmission electron microscopy were integrated to characterize the microcapsules (MCs). According to atomic force microscopy height analysis, membrane thickness of the MCs increased linearly with sequential deposition. For MCs prepared using the Fe3+-TA system, the average membrane thicknesses of MCs prepared with 2, 4, 6 and 8 deposition cycles were determined as 31.3 ± 4.6, 92.4 ± 15.0, 175.4 ± 22.1 and 254.8 ± 24.0 nm, respectively. Dissolution test showed that the release profiles of all the four tested MCs followed Higuchi kinetics. Membrane thicknesses of MCs prepared using the Ca2+-TA system were much smaller. We can easily tune the membrane thickness of the MCs by adjusting metal ions or deposition cycles according to the application requirements. The convenient tunability of the membrane thickness can enable an extensive use of this coordination assembly strategy in a broad range of applications.
机译:使用金属离子和单宁酸之间的配位组装法封装了一种模型溶剂1,3,5-三甲基苯,以揭示配位化合物在液-液界面上的沉积。沉积通过ζ电势,能量色散光谱法和X射线光电子光谱法确认。集成扫描电子显微镜和透射电子显微镜以表征微囊(MC)。根据原子力显微镜高度分析,MC的膜厚度随顺序沉积而线性增加。对于使用Fe3 + -TA系统制备的MC,经2、4、6和8个沉积循环制备的MC的平均膜厚分别确定为31.3±4.6、92.4±15.0、175.4±22.1和254.8±24.0 nm。溶出度测试表明,所有四个测试的MC的释放曲线均遵循Higuchi动力学。使用Ca2 + -TA系统制备的MC的膜厚度要小得多。通过根据应用要求调整金属离子或沉积周期,我们可以轻松调整MC的膜厚度。膜厚度的便捷可调性可以使这种配位组装策略在广泛的应用中得到广泛使用。

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