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首页> 外文期刊>Journal of the Chemical Society of Pakistan >Preparation of Ethylcellulose Latex by Aqueous Dispersions: Importance of the Particle Size and Plasticizer
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Preparation of Ethylcellulose Latex by Aqueous Dispersions: Importance of the Particle Size and Plasticizer

机译:通过水分散体制备乙基纤维素胶乳:粒度和增塑剂的重要性

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摘要

Based on phase transfer processes ethylcellulose (EC) latex was prepared using dibutyl sebacate (DBS) as plasticizer and oleic acid, ammonia water as an emulsifier to evaluate film-formation properties. Atomic force microscopy was used to characterize the surface features, practical size and differential scanning colorimetry was employed to investigate the effect of plasticizer on glass transition temperature of the resulting materials. The influences of emulsifier concentration on the particle size and on the viscosity were studied. The viscosity initially showed a decreased tendency and then increased linearly with increasing emulsifier concentration. On the other hand, the surface tension decreased considerably up to about 4 wt%, and then it almost remains unchanged with increasing emulsifier concentration. The polymer particle size was identified to be a very crucial formulation parameter, determining the resulting film coating structure and properties. Importantly the particle size decreased systemically with increasing emulsifier concentration up to about 2 wt% and then increased markedly with increasing emulsifier concentration. In addition, the results indicated that the incorporation of polymeric plasticizer substantially reduced the glass transition temperature (Tg) and softening temperature. Moreover, the home-synthesized EC latex could be used effectively to coat materials for drug release.
机译:基于相转移过程,使用癸二酸二丁酯(DBS)作为增塑剂,油酸,氨水作为乳化剂,制备了乙基纤维素(EC)胶乳,以评价成膜性能。原子力显微镜用于表征表面特征,实际尺寸和差示扫描比色法用于研究增塑剂对所得材料的玻璃化转变温度的影响。研究了乳化剂浓度对粒度和粘度的影响。粘度最初显示出降低的趋势,然后随乳化剂浓度的增加而线性增加。另一方面,表面张力显着降低直至约4wt%,然后随着乳化剂浓度的增加几乎保持不变。聚合物粒径被确定为非常关键的配方参数,决定了最终的薄膜涂层结构和性能。重要的是,随着乳化剂浓度的增加直至约2wt%,粒径整体减小,然后随着乳化剂浓度的增加而显着增加。另外,结果表明,加入聚合物增塑剂显着降低了玻璃化转变温度(Tg)和软化温度。此外,家用合成的EC乳胶可以有效地用于涂覆药物释放材料。

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