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溶剂蒸发技术优化微囊化的实验设计

Design of Experiment for Optimizing Microencapsulation by the Solvent Evaporation Technique.

作者信息

Loureiro Mónica V, Aguiar António, Santos Rui G Dos, Bordado João C, Pinho Isabel, Marques Ana C

机构信息

CERENA-Centro de Recursos Naturais e Ambiente, Departamento de Engenharia Química, Instituto Superior Técnico, Universidade de Lisboa, Avenida Rovisco Pais, 1049-001 Lisbon, Portugal.

CIPADE-Indústria e Investigação de Produtos Adesivos, SA. Av. Primeiro de Maio 121, 3700-227 São João da Madeira, Portugal.

出版信息

Polymers (Basel). 2023 Dec 29;16(1):111. doi: 10.3390/polym16010111.

Abstract

We employed microemulsion combined with the solvent evaporation technique to produce biodegradable polycaprolactone (PCL) MCs, containing encapsulated isophorone diisocyanate (IPDI), to act as crosslinkers in high-performance adhesive formulations. The MC production process was optimized by applying a design of experiment (DoE) statistical approach, aimed at decreasing the MCs' average size. For that, three different factors were considered, namely the concentration of two emulsifiers, polyvinyl alcohol (PVA) and gum arabic (GA); and the oil-to-water phase ratio of the emulsion. The significance of each factor was evaluated, and a predictive model was developed. We were able to decrease the average MC size from 326 μm to 70 µm, maintaining a high encapsulation yield of approximately 60% of the MCs' weight, and a very satisfactory shelf life. The MCs' average size optimization enabled us to obtain an improved distributive and dispersive mixture of isocyanate-loaded MCs at the adhesive bond. The MCs' suitability as crosslinkers for footwear adhesives was assessed following industry standards. Peel tests revealed peel strength values above the minimum required for casual footwear, while the creep test results indicated an effective crosslinking of the adhesive. These results confirm the ability of the MCs to release IPDI during the adhesion process and act as crosslinkers for new adhesive formulations.

摘要

我们采用微乳液结合溶剂蒸发技术来制备可生物降解的聚己内酯(PCL)微胶囊,其中包封了异佛尔酮二异氰酸酯(IPDI),用作高性能胶粘剂配方中的交联剂。通过应用实验设计(DoE)统计方法对微胶囊的生产工艺进行了优化,旨在减小微胶囊的平均尺寸。为此,考虑了三个不同因素,即两种乳化剂聚乙烯醇(PVA)和阿拉伯胶(GA)的浓度,以及乳液的油相-水相比。评估了每个因素的显著性,并建立了预测模型。我们能够将微胶囊的平均尺寸从326μm减小到70μm,同时保持约60%的微胶囊重量的高包封率以及非常令人满意的保质期。微胶囊平均尺寸的优化使我们能够在胶粘剂粘结处获得负载异氰酸酯的微胶囊的更好的分布和分散混合物。按照行业标准评估了微胶囊作为鞋类胶粘剂交联剂的适用性。剥离试验显示剥离强度值高于休闲鞋所需的最低值,而蠕变试验结果表明胶粘剂发生了有效交联。这些结果证实了微胶囊在粘合过程中释放IPDI并作为新型胶粘剂配方交联剂的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad15/10780531/8ae33a10cbd9/polymers-16-00111-g001.jpg

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