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Environmental Responsiveness of Polygalacturonic Acid-Based Multilayers to Variation of pH

机译:基于聚半乳糖醛酸的多层膜对pH变化的环境响应性

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The effect of pH on the stability of layer-by-layer deposited polygalacturonic acid (PGalA)-based multilayer films prepared with the polycations poly-L-lysine, chitosan, and lysozyme is studied. The response was characterized using a quartz crystal microbalance, dual polarization interferometry, and Fourier transform infrared spectroscopy which probe multilayer thickness, density, polymer mass (composition and speciation), and hydration. All multilayers showed irreversible changes in response to pH change becoming thinner due to the partial disassembly. Preferential loss of the polycation (50-80% w/w) and relative small losses of PGaLA (10-35% w/w) occurred. The charge density on the polycation has a strong influence on the response to the acid cycle. Most of the disassembly takes place at the pH lower that pK, of PGaLA, indicating that this factor was crucial in determining the stability of the films. The pH challenge also revealed a polycation-dependent shift to acid pH in the PGaLA pK_a.
机译:研究了pH对使用聚阳离子聚L-赖氨酸,壳聚糖和溶菌酶制备的逐层沉积的聚半乳糖醛酸(PGalA)基多层薄膜的稳定性的影响。使用石英晶体微量天平,双极化干涉仪和傅里叶变换红外光谱对响应进行了表征,该光谱探测多层厚度,密度,聚合物质量(组成和形态)和水合作用。由于部分拆卸,响应pH变薄,所有多层膜均显示不可逆变化。发生了聚阳离子的优先损失(50-80%w / w)和PGaLA相对较小的损失(10-35%w / w)。聚阳离子上的电荷密度对酸循环的响应有很大影响。大部分拆卸发生在低于PGaLA的pK的pH值下,这表明该因素对于确定薄膜的稳定性至关重要。 pH挑战还揭示了PGaLA pK_a中聚阳离子依赖性转变为酸性pH。

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