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Preparation and Properties of Thermo-sensitive Latex Films

机译:热敏乳胶膜的制备与性能

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Polymer particles with hydrophobic core and hydrophilic shell were prepared via a three-step method. First, poly (butyl methacrylate -co- methyl methacrylate) (p-(BMA-MMA)) latex was prepared through emulsion polymerization. Then, using the p-(BMA-MMA) latex as seed, a uniform shell of poly(glycidyl methacrylate) (p-GMA) was formed by using a redox initiation system under kinetically controlled conditions. The contents of the shell were in the range of 5-15 wt. %. Finally, the epoxy groups existing in the shell were converted into the ionic species through the reaction with triethanolamine hydrochlorid in aqueous phase, resulting in a charged hydrophilic shell. The solid particles could be re-dispersed in water to afford a stable emulsion. Latex films were prepared by spin-casting the aqueous mixture of the latex made from the solid latex particles and poly (vinyl alcohol) (PVA) onto an aluminum substrate and then dried at room temperature. The contact angles between the core-shell latex films and water were in the range of16.1°-27.5° at 25 ℃, but would turn to be larger than 87° after the films were baked at 150 ℃ for a short period of time. This indicated that the films were completely switched from hydrophilicity to hydrophobicity by the action of heat. Additionally, the latex films before baking could be easily washed away from the substrate with neutral water, but could no longer be removed after baking. When an 1R dye (with maximal absorption at 830nm) was incorporated into the film, the film became sensitive to LD lasers emitting at 830 nm and negative images were obtained after exposed by LD laser and developed by neutral water.
机译:通过三步法制备具有疏水核和亲水壳的聚合物颗粒。首先,通过乳液聚合制备聚(甲基丙烯酸丁酯-共-甲基丙烯酸甲酯)(p-(BMA-MMA))胶乳。然后,使用对-(BMA-MMA)乳胶作为种子,通过在动力学控制的条件下使用氧化还原引发系统,形成聚甲基丙烯酸缩水甘油酯(p-GMA)的均匀壳。壳的含量为5-15重量%。 %。最后,存在于壳中的环氧基通过与三乙醇胺盐酸盐在水相中的反应而转化成离子物种,从而形成带电荷的亲水性壳。可以将固体颗粒重新分散在水中以提供稳定的乳液。通过将由固体胶乳颗粒和聚乙烯醇(PVA)制成的胶乳的含水混合物旋铸到铝基材上,然后在室温下干燥,来制备胶乳膜。核-壳型乳胶膜与水的接触角在25℃下为16.1°-27.5°,但在150℃下短时间烘烤后会大于87°。 。这表明通过热作用,膜完全从亲水性转变为疏水性。另外,烘烤前的胶乳薄膜可以很容易地用中性水从基材上洗掉,但是烘烤后再也不能除去。当将1R染料(在830nm处具有最大吸收)掺入膜中时,该膜对830nm处发射的LD激光变得敏感,并且在通过LD激光曝光并由中性水显影后获得负像。

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