Iran Polymer and Petrochemical Institute , P.O. Box 14965-115, Tehran, Iran.
Department of Chemical Engineering and Applied Chemistry, University of Toronto , 200 College Street, Toronto, Ontario M5S 3E5, Canada.
ACS Appl Mater Interfaces. 2017 Jun 21;9(24):20818-20825. doi: 10.1021/acsami.7b03708. Epub 2017 Jun 6.
This work involves the optimized preparation and characterization of microcapsules which contain benzoyl peroxide (BPO) dispersed in dibutyl phthalate (DBP) with gelatin-gum arabic (Gel-GA)/polyurea-formaldehyde (PUF) shell. The microcapsules were prepared in two steps using complex coacervation and in situ polymerization techniques, respectively, at various mixing speeds and different core:shell ratios. The scanning electron microscopy (SEM), optical microscopy, and Fourier transform infrared (FTIR) spectroscopy were used for characterization of prepared microcapsules. The resultant microcapsules were spherical with average diameters about 120-200 μm, had no intercapsule bonding, and had thicknesses of 0.7-1.5 μm. The results revealed high core content loading, 82-89 wt % for microcapsules prepared at various mixing speeds. The differential scanning calorimetry analysis (DSC) indicated that the encapsulated BPO was not influenced by the encapsulation process and maintained its activity. Moreover, with a compact and double Gel-GA/PUF shell, the microcapsules were stable, and no leakage of core material in an acrylate-based resin and toluene as an organic solvent was recorded. The resultant microcapsules have the potential of usage in industries such as self-healing systems and structural adhesives where the impermeability of microcapsules is an important factor.
这项工作涉及优化制备和表征含有过氧化二苯甲酰 (BPO) 分散在邻苯二甲酸二丁酯 (DBP) 中的微胶囊,微胶囊的外壳由明胶-阿拉伯胶 (Gel-GA)/聚脲-甲醛 (PUF) 组成。微胶囊采用两步法制备,分别采用复凝聚和原位聚合技术,在不同的混合速度和不同的核壳比下进行。扫描电子显微镜 (SEM)、光学显微镜和傅里叶变换红外 (FTIR) 光谱用于表征制备的微胶囊。所得微胶囊呈球形,平均直径约为 120-200 μm,无胶囊间结合,厚度为 0.7-1.5 μm。结果表明,微胶囊的芯材含量较高,高达 82-89 wt%,在不同的混合速度下制备。差示扫描量热分析 (DSC) 表明,包封的 BPO 不受封装过程的影响,保持其活性。此外,由于具有致密的双层 Gel-GA/PUF 壳,微胶囊稳定,在丙烯酸盐基树脂和甲苯等有机溶剂中没有芯材泄漏。所得微胶囊具有在自修复系统和结构胶等行业中应用的潜力,其中微胶囊的不渗透性是一个重要因素。