首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Assembly of Multilayered Films Using Well-Defined,End-Labeled Poly(acrylic acid):Influence of Molecular Weight on Exponential Growth in a Synthetic Weak Polyelectrolyte System
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Assembly of Multilayered Films Using Well-Defined,End-Labeled Poly(acrylic acid):Influence of Molecular Weight on Exponential Growth in a Synthetic Weak Polyelectrolyte System

机译:使用定义明确的末端标签聚丙烯酸组装多层膜:在合成弱聚电解质体系中分子量对指数增长的影响

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摘要

We report on the influence of polyanion molecular weight on the growth and structure of multilayered thin films fabricated from poly(allylamine)(PAH)and well-defined,end-labeled poly(acrylic acid)(PAA)synthesized by atom transfer radical polymerization.We observed striking differences in the growth of PAH/PAA films fabricated using well-defined PAA compared to films fabricated using higher molecular weight,commercially available PAA.Past studies demonstrate that the thicknesses of PAH/PAA films increase as linear functions of the number of PAH and PAA layers deposited over a broad range of pH(e.g.,from pH 2.5 to 4.5).We observed the thicknesses of films fabricated using solutions of PAH and PAA adjusted to pH 7.5 and 3.5,respectively,to increase in a nonlinear manner.Films fabricated using well-defined,low molecular weight samples of PAA under these conditions increased in thickness exponentially.Experiments using samples of PAA having substantially non-overlapping molecular weight distributions demonstrated a clear relationship between the molecular weight of PAA and rates of film growth.We also used confocal microscopy,in combination with fluorescently end-labeled samples of PAA,to characterize the location of PAA in these assemblies.The results of these experiments,when combined,support the general conclusion that PAA is able to penetrate or diffuse into these films over large distances during assembly.The mechanism of growth for these films thus appears similar to that recently reported for the exponential growth of films fabricated using a variety of biologically relevant poly electrolytes.The use of living/controlled methods of polymerization to synthesize well-defined samples of PAA facilitates an interpretation of these differences in film behavior as arising largely from differences in polymer molecular weight and polydispersity.This work provides insight into the assembly and structure of a well-studied weak polyelectrolyte film system and illustrates the potential of living/controlled methods of polymerization to contribute to the characterization and understanding of the physical properties of these ionically cross-linked materials.
机译:我们报道了聚阴离子分子量对由聚(烯丙胺)(PAH)和原子转移自由基聚合合成的定义明确的,末端标记的聚(丙烯酸)(PAA)制成的多层薄膜的生长和结构的影响。我们观察到使用定义明确的PAA制成的PAH / PAA薄膜与使用较高分子量的市售PAA制成的薄膜相比在生长方面存在显着差异。过去的研究表明,PAH / PAA薄膜的厚度随着数量的线性变化而增加。 PAH和PAA层在较宽的pH值范围内(例如pH 2.5至4.5)沉积。我们观察到分别使用调整为pH 7.5和3.5的PAH和PAA溶液制备的膜的厚度以非线性方式增加。在这些条件下,使用定义明确的低分子量PAA样品制成的膜的厚度呈指数增加。使用分子量基本不重叠的PAA样品进行的实验实验表明,PAA的分子量与膜的生长速率之间存在明显的关系。我们还使用了共聚焦显微镜,并结合了荧光标记的PAA样品来表征PAA在这些组件中的位置。这些实验的结果是,当结合使用时,支持以下一般结论:PAA能够在组装过程中在很长的距离内渗透或扩散到这些薄膜中。因此,这些薄膜的生长机理似乎与最近报道的使用多种生物方法制备的薄膜的指数增长机理相似。使用活性/受控聚合方法合成定义明确的PAA样品有助于解释薄膜行为的这些差异,这些差异主要是由于聚合物分子量和多分散性的差异引起的。深入研究的弱聚电解质薄膜系统的结构,并说明了活性/受控聚合方法有助于表征和理解这些离子交联材料的物理性质的潜力。

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