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含有两相核材料的微胶囊的制备。

Preparation of microcapsules containing two-phase core materials.

作者信息

Wang Jian-Ping, Zhao Xiao-Peng, Guo Hui-Lin, Zheng Qing

机构信息

Institute of Electrorheological Technology, Department of Applied Physics, Northwestern Polytechnical Uuniversity, Xi' an, 710072, People's Republic of China.

出版信息

Langmuir. 2004 Dec 7;20(25):10845-50. doi: 10.1021/la0490902.

Abstract

Urea-formaldehyde (UF) microcapsules containing two-phase core materials in which phthalocyanine blue BGS (beta-CuPc) particles were homodispersed in tetrachloroethylene (TCE) were prepared by in situ polymerization. The effects of the various process parameters, including the type of surface modifier, the viscosity of UF prepolymer, the type of water-soluble surfactant, and the concentration of oil-soluble surfactant in the capsule core on the dispersity of beta-CuPc particles in TCE and the properties of the capsule wall and the adsorption of beta-CuPc particles on the internal surface of capsule wall were experimentally investigated. It was shown that using octadecylamine (ODA) to modify beta-CuPc particles resulted in a significant increase of the dispersing extent (DE) and the electrophoresis velocity of the particles in TCE (about 4 and 20 times more than that of unmodified). In addition, the optimal reaction conditions of the synthesis UF prepolymer were obtained by the orthogonal test. On the other hand, as the oil/water interfacial tension of emulsion was big enough, the microcapsule formed. The concentration of Span-80 in TCE was no less than 0.062 mM; the adsorption of beta-CuPc particles on internal surface of wall were restrained. Finally, the microcapsules in which beta-CuPc particles possess reversible response to dc electric field were obtained.

摘要

通过原位聚合法制备了含有两相核材料的脲醛(UF)微胶囊,其中酞菁蓝BGS(β - 铜酞菁)颗粒均匀分散在四氯乙烯(TCE)中。实验研究了各种工艺参数的影响,包括表面改性剂的类型、UF预聚物的粘度、水溶性表面活性剂的类型以及胶囊核中油溶性表面活性剂的浓度对β - 铜酞菁颗粒在TCE中的分散性、胶囊壁的性能以及β - 铜酞菁颗粒在胶囊壁内表面的吸附情况。结果表明,使用十八胺(ODA)改性β - 铜酞菁颗粒可显著提高颗粒在TCE中的分散程度(DE)和电泳速度(比未改性的分别高出约4倍和20倍)。此外,通过正交试验获得了合成UF预聚物的最佳反应条件。另一方面,当乳液的油/水界面张力足够大时,形成了微胶囊。TCE中Span - 80的浓度不低于0.062 mM;β - 铜酞菁颗粒在壁内表面的吸附受到抑制。最终获得了β - 铜酞菁颗粒对直流电场具有可逆响应的微胶囊。

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