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首页> 外文期刊>Journal of Photopolymer Science and Technology >Photo-polymerization Property of the Photosensitive Core-shell Structured Microcapsule Material
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Photo-polymerization Property of the Photosensitive Core-shell Structured Microcapsule Material

机译:光敏核壳结构微胶囊材料的光聚合性能

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The sub-micrometer core-shell microcapsule is synthesized by interfacial polymerization method, with photocrosslinkable resin TMPTA and photoinitiators ITX, TPO encapsulated as core functional compounds. FT-IR detection shows the polyurea chemical structure of the microcapsule shell, and TG analysis verifies that the microcapsule is thermal stable below 230°C. The photopolymerization process in microcapsule is measured quantitatively from the variance of the C=C bond absorbance at 1635cm~(-1). The photopolymerization degree in microcapsule increases with rise of exposure time, and achieves stabilized photopolymerization percentage of 39.4% after 30s, which is lower in comparison with 60% of the unencapsulated resin/photoinitiators mixture exposed after 15s. The decrease of photopolymerized degree in microcapsules is ascribed to the UV irradiation attenuation when transmitted through the microcapsule shell. The photosensitive microcapsules can act as basic functional cells in responding to photo stimuli at sub-micrometer scale.
机译:亚微米核-壳微胶囊是通过界面聚合法合成的,以光可交联树脂TMPTA和光引发剂ITX,TPO封装为核心功能化合物。 FT-IR检测显示了微胶囊壳的聚脲化学结构,TG分析证实了微胶囊在230°C以下具有热稳定性。根据1635cm〜(-1)处C = C键的吸光度变化,定量测量微胶囊中的光聚合过程。微胶囊中的光聚合度随曝光时间的增加而增加,并在30s后达到稳定的39.4%的光聚合百分比,与15s后暴露的未封装树脂/光引发剂混合物的60%相比,该百分比较低。微胶囊中光聚合度的降低归因于当透过微胶囊壳时紫外线辐射的衰减。光敏微囊可在亚微米级响应光刺激而充当基本功能细胞。

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