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Temperature effect on the build-up of exponentially growing polyelectrolyte multilayers. An exponential-to-linear transition point

机译:温度对指数增长的聚电解质多层积聚的影响。指数到线性的过渡点

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摘要

In this study, the effect of temperature on the build-up of exponentially growing polyelectrolyte multilayer films was investigated. It aims at understanding the multilayer growth mechanism as crucially important for the fabrication of tailor-made multilayer films. Model poly(L-lysine)/hyaluronic acid (PLL/HA) multilayers were assembled in the temperature range of 25-85 degrees C by layer-by-layer deposition using a dipping method. The film growth switches from the exponential to the linear regime at the transition point as a result of limited polymer diffusion into the film. With the increase of the build-up temperature the film growth rate is enhanced in both regimes; the position of the transition point shifts to a higher number of deposition steps confirming the diffusion-mediated growth mechanism. Not only the faster polymer diffusion into the film but also more porous/permeable film structure are responsible for faster film growth at higher preparation temperature. The latter mechanism is assumed from analysis of the film growth rate upon switching of the preparation temperature during the film growth. Interestingly, the as-prepared films are equilibrated and remain intact (no swelling or shrinking) during temperature variation in the range of 25-45 degrees C. The average activation energy for complexation between PLL and HA in the multilayers calculated from the Arrhenius plot has been found to be about 0.3 kJ mol(-1) for monomers of PLL. Finally, the following processes known to be dependent on temperature are discussed with respect to the multilayer growth: (i) polymer diffusion, (ii) polymer conformational changes, and (iii) inter-polymer interactions.
机译:在这项研究中,研究了温度对指数增长的聚电解质多层膜堆积的影响。它旨在了解多层生长机制对于定制多层膜的制造至关重要。在25-85摄氏度的温度范围内,采用浸涂法通过逐层沉积组装模型聚L-赖氨酸/透明质酸(PLL / HA)多层膜。由于有限的聚合物扩散到薄膜中,薄膜的生长在过渡点从指数形式转换为线性形式。随着堆积温度的升高,在两种情况下膜的生长速度都提高了。过渡点的位置转移到更高数量的沉积步骤,从而确认了扩散介导的生长机制。在较高的制备温度下,不仅聚合物更快扩散到膜中,而且更多的多孔/可渗透膜结构也导致更快的膜生长。通过分析在膜生长期间切换制备温度时的膜生长速率来假定后一种机理。有趣的是,所制备的薄膜在25-45摄氏度范围内的温度变化过程中达到平衡并保持完整(无膨胀或收缩)。根据Arrhenius曲线计算得出的多层中PLL和HA之间络合的平均活化能为被发现对于PLL单体约为0.3 kJ mol(-1)。最后,关于多层生长讨论了以下与温度有关的过程:(i)聚合物扩散,(ii)聚合物构象变化和(iii)聚合物间相互作用。

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