首页> 外文期刊>Journal of Macromolecular Science. Physics >Correlation of Diffusional Exponent with Structural Sequence of (N-Vinylpyrrolidone-alt-Acrylic Acid) Hydrogels: A Predictive Hydrogel Design Approach
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Correlation of Diffusional Exponent with Structural Sequence of (N-Vinylpyrrolidone-alt-Acrylic Acid) Hydrogels: A Predictive Hydrogel Design Approach

机译:(N-乙烯基吡咯烷酮-alt-丙烯酸)水凝胶的扩散指数与结构序列的相关性:一种预测性水凝胶设计方法。

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Correlation of diffusional exponent of water into (N-Vinylpyrrolidone-alt-Acrylic acid) hydrogels with the structural sequence of hydrogel repeating units (i.e. hydrophilic and/or hydrophobic moieties) through a scaling law relationship has been investigated. The diffusional exponent (n) was found to depend linearly on Y/X~2, where X equals to molar ratio of monomers in the feed (i.e. ([M_1 ]/[M_2 ])_(feed)) and Y equals to molar ratio of repeating units in the copolymer (i.e. ([M_1 ]/[M_2 ])_(copolymer)). Copolymers rich in hydrophilic acrylic acid (i.e. larger Y/X~2) were found to form more coiled polymeric chains as acrylic acid content increased due to H-bonding interactions, and hence results in lower diffusion coefficients and linear lowering of the n-value. On the other hand copolymers rich in partially hydrophobic N-vinylpyrrolidone (i.e. smaller Y/X~2) formed more uncoiled polymeric chains as N-vinylpyrrolidone content increased due to larger amounts of positively charged protonated nitrogen atoms at pH 5.5 that tend to repel each other, which eventually lead to higher diffusion coefficients and a linear increase in n-value. These characteristic findings could be significant in sustained drug release studies, where the structural sequence of a hydrogel plays a dominant role in the release kinetics of a drug at certain positions and/or times.
机译:已经通过比例定律关系研究了水扩散到(N-乙烯基吡咯烷酮-alt-丙烯酸)水凝胶中的扩散指数与水凝胶重复单元的结构序列(即亲水和/或疏水部分)的相关性。发现扩散指数(n)线性取决于Y / X〜2,其中X等于进料中单体的摩尔比(即([M_1] / [M_2])_(进料)),Y等于摩尔共聚物中重复单元的比率(即([M_1] / [M_2])_(共聚物))。发现富含亲水性丙烯酸的共聚物(即较大的Y / X〜2)随着H键相互作用增加丙烯酸含量而形成更多的卷曲聚合物链,因此导致较低的扩散系数和n值的线性降低。另一方面,富含部分疏水性N-乙烯基吡咯烷酮(即较小的Y / X〜2)的共聚物形成了更多未卷曲的聚合物链,因为N-乙烯基吡咯烷酮的含量由于pH 5.5上带正电荷的质子化氮原子的数量增加而趋于排斥最终导致更高的扩散系数和n值线性增加。这些特征性发现在持续药物释放研究中可能是重要的,其中水凝胶的结构序列在某些位置和/或时间在药物释放动力学中起主要作用。

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