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通过溶剂变化实现有机凝胶中机械性能与传输性能的解耦

Decoupling of Mechanical and Transport Properties in Organogels via Solvent Variation.

作者信息

Mineart Kenneth P, Hong Cameron, Rankin Lucas A

机构信息

Department of Chemical Engineering, Bucknell University, Lewisburg, PA 17837, USA.

出版信息

Gels. 2021 May 21;7(2):61. doi: 10.3390/gels7020061.

Abstract

Organogels have recently been considered as materials for transdermal drug delivery media, wherein their transport and mechanical properties are among the most important considerations. Transport through organogels has only recently been investigated and findings highlight an inextricable link between gels' transport and mechanical properties based upon the formulated polymer concentration. Here, organogels composed of styrenic triblock copolymer and different aliphatic mineral oils, each with a unique dynamic viscosity, are characterized in terms of their quasi-static uniaxial mechanical behavior and the internal diffusion of two unique solute penetrants. Mechanical testing results indicate that variation of mineral oil viscosity does not affect gel mechanical behavior. This likely stems from negligible changes in the interactions between mineral oils and the block copolymer, which leads to consistent crosslinked network structure and chain entanglement (at a fixed polymer concentration). Conversely, results from diffusion experiments highlight that two penetrants-oleic acid (OA) and aggregated aerosol-OT (AOT)-diffuse through gels at a rate inversely proportional to mineral oil viscosity. The inverse dependence is theoretically supported by the hydrodynamic model of solute diffusion through gels. Collectively, our results show that organogel solvent variation can be used as a design parameter to tailor solute transport through gels while maintaining fixed mechanical properties.

摘要

最近,有机凝胶被认为是用于透皮给药介质的材料,其中它们的传输和机械性能是最重要的考虑因素。直到最近才对通过有机凝胶的传输进行了研究,研究结果突出了基于配方聚合物浓度的凝胶传输与机械性能之间存在着紧密的联系。在此,由苯乙烯三嵌段共聚物和不同的脂肪族矿物油组成的有机凝胶,每种矿物油都具有独特的动态粘度,对其准静态单轴力学行为和两种独特溶质渗透剂的内部扩散进行了表征。力学测试结果表明,矿物油粘度的变化不会影响凝胶的力学行为。这可能源于矿物油与嵌段共聚物之间相互作用的变化可忽略不计,这导致了一致的交联网络结构和链缠结(在固定的聚合物浓度下)。相反,扩散实验结果突出表明,两种渗透剂——油酸(OA)和聚集的气溶胶-OT(AOT)——以与矿物油粘度成反比的速率扩散通过凝胶。溶质通过凝胶扩散的流体动力学模型从理论上支持了这种反比关系。总体而言,我们的结果表明,有机凝胶溶剂的变化可以用作设计参数,以在保持固定机械性能的同时调整溶质通过凝胶的传输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de41/8162343/6f3b6382a4e2/gels-07-00061-g001.jpg

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