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The function of gelatin in controlled precipitation processes of nanosize particles

机译:明胶在纳米颗粒可控沉淀过程中的作用

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Gelatin is well suited in the preparation of nanosize particles by precipitation of organic substances. Due to their amphiphilic structure, the gelatin molecules exhibit a pronounced surface activity. The surface activity was investigated by means of the Wilhelmy plate and the maximum bubble pressure technique within a time frame of more than five orders of magnitude. The influence of an emulsifier and the gelatin/emulsifier interaction are discussed. By means of laser Doppler electrophoresis, the electrophoretic mobility of A-type and B-type gelatin is measured. The molecular weight distribution of gelatin is measured by size exclusion chromatography. The size of dissolved and adsorbed gelatin molecules is determined by means of dynamic light scattering. It is shown that the surface activity of the gelatin/emulsifier complexes controls the size of the precipitated particles. Furthermore, we show that gelatin is adsorbed by hydrophobic interactions and provides excellent colloidal stability to nanosize particles. [References: 15]
机译:明胶非常适合通过有机物质的沉淀制备纳米级颗粒。由于其两亲结构,明胶分子表现出明显的表面活性。在超过五个数量级的时间范围内,通过Wilhelmy板和最大气泡压力技术研究了表面活性。讨论了乳化剂和明胶/乳化剂相互作用的影响。通过激光多普勒电泳,测量A型和B型明胶的电泳迁移率。明胶的分子量分布通过尺寸排阻色谱法测量。借助于动态光散射确定溶解和吸附的明胶分子的大小。结果表明,明胶/乳化剂复合物的表面活性控制着沉淀颗粒的大小。此外,我们表明明胶被疏水相互作用吸收,并为纳米级颗粒提供了出色的胶体稳定性。 [参考:15]

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