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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Understanding and controlling morphology formation in Langmuir-Blodgett block copolymer films using PS-P4VP and PS-P4VP/PDP
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Understanding and controlling morphology formation in Langmuir-Blodgett block copolymer films using PS-P4VP and PS-P4VP/PDP

机译:使用PS-P4VP和PS-P4VP / PDP了解和控制Langmuir-Blodgett嵌段共聚物薄膜的形貌形成

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This contribution offers a comprehensive understanding of the factors that govern the morphologies of Langmuir-Blodgett (LB) monolayers of amphiphilic diblock copolymers (BCs). This is achieved by a detailed investigation of a wide range of polystyrene-poly(4-vinyl pyridine) (PS-P4VP) block copolymers, in contrast to much more limited ranges in previous studies. Parameters that are varied include the block ratios (mainly for similar total molecular weights, occasionally other total molecular weights), the presence or not of 3-n-pentadecylphenol (PDP, usually equimolar with VP, with which it hydrogen bonds), the spreading solution concentration ("low" and "high"), and the LB technique (standard vs "solvent- assisted"). Our observations are compared with previously published results on other amphiphilic diblock copolymers, which had given rise to contradictory interpretations of morphology formation. Based on the accumulated results, we re-establish early literature conclusions that three main categories of LB block copolymer morphologies are obtained depending on the block ratio, termed planar, strand, and dot regimes. The block composition boundaries in terms of mol % block content are shown to be similar for all BCs having alkyl chain substituents on the hydrophilic block (such as PS-P4VP/PDP) and are shifted to higher values for BCs with no alkyl chain substituents (such as PS-P4VP). This is attributed to the higher surface area per repeat unit of the hydrophilic block monolayer on the water surface for the former, as supported by the onset and limiting areas of the Langmuir isotherms for the BCs in the dot regime. 2D phase diagrams are discussed in terms of relative effective surface areas of the two blocks. We identify and discuss how kinetic effects on morphology formation, which have been highlighted in more recent literature, are superposed on the compositional effects. The kinetic effects are shown to depend on the morphology regime, most strongly influencing the strand and, especially, planar regimes, where they give rise to a diversity of specific structures. Besides film dewetting mechanisms, which are different when occurring in structured versus unstructured films (the latter previously discussed in the literature), kinetic influences are discussed in terms of chain association dynamics leading to depletion effects that impact on growing aggregates. These depletion effects particularly manifest themselves in more dilute spreading solutions, with higher molecular weight polymers, and in composition regimes characterized by equilibrium degrees of aggregation that are effectively infinite. It is by understanding these various kinetic influences that the diversity of structures can be classified by the three main composition-dependent regimes.
机译:此贡献提供了对控制两亲性二嵌段共聚物(BCs)的Langmuir-Blodgett(LB)单层形态的因素的全面理解。这是通过对广泛范围的聚苯乙烯-聚(4-乙烯基吡啶)(PS-P4VP)嵌段共聚物进行详细研究而实现的,与之相比,以前的研究范围则更为有限。可变的参数包括嵌段比率(主要是针对相似的总分子量,偶尔是其他总分子量),是否存在3-正十五烷基苯酚(PDP,通常与VP等摩尔,与氢键键合),扩散溶液浓度(“低”和“高”)以及LB技术(标准液与“溶剂辅助液”)。我们的观察结果与先前发表的关于其他两亲性二嵌段共聚物的结果进行了比较,这些结果引起了形态学形成的矛盾解释。根据累积的结果,我们重新建立了早期的文献结论,即根据嵌段比(称为平面,链和点结构)获得了LB嵌段共聚物形态的三个主要类别。对于所有在亲水性嵌段上具有烷基链取代基的BC(例如PS-P4VP / PDP),以摩尔百分比嵌段含量表示的嵌段组成边界均显示相似,并且对于没有烷基链取代基的BCs转移到更高的值(例如PS-P4VP)。这归因于前者在水表面上亲水性嵌段单层的每个重复单元的表面积较大,这是由点域中BC的Langmuir等温线的起始和极限面积所支持的。关于两个块的相对有效表面积讨论了二维相图。我们确定并讨论了如何将对形态形成的动力学影响(已在较新的文献中重点介绍)如何叠加在成分影响上。动力学效应显示取决于形态形态,最强烈地影响链,尤其是平面形态,在这种形态下它们会产生特定结构的多样性。除了在结构膜和非结构膜中发生膜润湿的机制不同(后者先前在文献中讨论过)之外,还根据链缔合动力学讨论了动力学影响,从而导致了对生长的聚集体的影响。这些耗尽效应尤其表现在更稀的分散溶液中,具有更高分子量的聚合物中,以及在以有效平衡的聚集平衡度为特征的组成方案中。通过理解这些各种动力学影响,可以通过三种主要的成分依赖性体系对结构的多样性进行分类。

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