首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >A LB film morphological study with reference to biopolymer-surfactant interaction taking gelatin-CTAB system as a model.
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A LB film morphological study with reference to biopolymer-surfactant interaction taking gelatin-CTAB system as a model.

机译:以明胶-CTAB系统为模型,参照生物聚合物-表面活性剂相互作用的LB膜形态学研究。

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摘要

The interaction of gelatin with cetyltrimethylammonium bromide (CTAB) studied at pH 9 and an ionic strength of 0.005, produces an interfacial surface active gelatin-CTAB (monomer) complex (GS(n)(I)), a surface inactive gelatin-CTAB (micelle) complex in bulk (GS(m)(B)), followed by coacervation, and its solubilization in micellar solution of CTAB. We have herein attempted to probe the interfacial morphological changes of gelatin and its CTAB complexes, and not the bulk properties like coacervation and/or micellar solubilization. The morphologies of pure gelatin and CTAB films and that of gelatin-CTAB interacted complex at the interface have been investigated using LB, SEM, AFM and ellipsometric techniques. The stability of the gelatin monolayer at varied concentrations with and without CTAB has been examined. The SEM images of stabilized films of gelatin and gelatin-CTAB complex have witnessed compact smooth as well as rough surfaces with formation of distinct domains. Drastic morphological change in the film before the critical aggregational concentration of CTAB (T(2)) has been in line with an initial abrupt decrease in surface tension. This has been corroborated by AFM measurements, which along with morphology demonstration has provided information on the diameter of the ensembles formed and roughness of the LB films constituted of pure components and their complexes. Thickness of the film was at its maximum in the domain region, as corroborated by ellipsometric technique. Such an elaborate interfacial monolayer and film morphology study of biopolymer-amphiphile system has been rarely documented in literature.
机译:明胶与十六烷基三甲基溴化铵(CTAB)的相互作用在pH 9和离子强度为0.005的条件下进行了研究,产生了界面活性明胶-CTAB(单体)复合物(GS(n)(I)),表面惰性明胶-CTAB(胶束)(GS(m)(B)),然后凝聚,并将其溶解在CTAB的胶束溶液中。我们在本文中试图探明明胶及其CTAB复合物的界面形态变化,而不是探究诸如凝聚和/或胶束增溶的整体性质。使用LB,SEM,AFM和椭偏技术研究了纯明胶和CTAB薄膜的形态以及界面处明胶-CTAB相互作用的复合物的形态。已经研究了在有和没有CTAB的情况下明胶单层在不同浓度下的稳定性。明胶和明胶-CTAB复合物的稳定化膜的SEM图像显示出致密的光滑表面和粗糙表面,并形成了不同的区域。在临界聚集浓度CTAB(T(2))之前,膜的剧烈形态变化与表面张力的初始急剧下降相一致。 AFM测量已证实了这一点,AFM测量与形态学演示一起提供了有关形成的集合体直径和由纯组分及其络合物组成的LB膜的粗糙度的信息。膜的厚度在最大区域中是最大的,如通过椭圆偏振技术所证实的。对生物聚合物-两亲体系如此复杂的界面单层和薄膜形态研究很少在文献中记载。

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