Zhao Hongbin, Fei Xuening, Cao Lingyun, Zhang Baolian, Liu Xin
School of Chemical Engineering and Technology, Tianjin University Tianjin 300350 China
School of Science, Tianjin Chengjian University Tianjin 300384 China.
RSC Adv. 2019 Aug 13;9(43):25225-25231. doi: 10.1039/c9ra05196a. eCollection 2019 Aug 8.
The relation between the particle size and release characteristics of aromatic microcapsules with a melamine resin shell in functional textile applications have been investigated. Firstly, the microcapsules are characterized based on their Fourier transform infrared spectra, encapsulation efficiencies, particle size distributions, optical images, and scanning electron microscopy images. The impregnation performances of the microcapsules have been initially evaluated using image analysis. Subsequently, the impregnation efficiency and broken release characteristics are semi-quantitatively analyzed using solid-phase microextraction-gas chromatography-mass spectrometry. The analysis results show that the highest impregnation efficiency and broken release intensity could be observed when the microcapsule size was similar to the fiber diameter (25-30 μm). Eventually, the sustained release of the microcapsules over a period of 2400 h was evaluated using the weighing calculation method, and the trends were studied using the Peppas model. It was found that the microcapsule release rate slowly and continuously decreased with time, and the release rates significantly increased with the decrease in microcapsule particle size. Thus, it could be concluded that the large microcapsules exhibited better leak tightness than the small microcapsules, whereas the small microcapsules exhibited faster sustained release rates.
研究了具有三聚氰胺树脂外壳的芳香微胶囊在功能性纺织品应用中的粒径与释放特性之间的关系。首先,基于傅里叶变换红外光谱、包封效率、粒径分布、光学图像和扫描电子显微镜图像对微胶囊进行表征。最初使用图像分析评估微胶囊的浸渍性能。随后,使用固相微萃取-气相色谱-质谱法对浸渍效率和破损释放特性进行半定量分析。分析结果表明,当微胶囊尺寸与纤维直径相似(25-30μm)时,可观察到最高的浸渍效率和破损释放强度。最后,使用称重计算法评估微胶囊在2400小时内的缓释情况,并使用Peppas模型研究其趋势。结果发现,微胶囊的释放速率随时间缓慢且持续下降,且释放速率随微胶囊粒径的减小而显著增加。因此,可以得出结论,大微胶囊比小微胶囊表现出更好的密封性,而小微胶囊表现出更快的缓释速率。