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Surface migration of branched molecules: Analysis of energetic and entropic factors

机译:支链分子的表面迁移:能量和熵因素分析

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We have introduced energetic factors into the response theory developed by Wu and Fredrickson [Macromolecules 29, 7919 (1996)] to predict the enrichment of branched molecules due to architectural effects at surfaces. This development simultaneously increases the utility of the theory for guiding experimental investigations, and makes possible a rigorous assessment of theoretical predictions in careful studies of isotopically labeled linear/branched species binary blends at surfaces. For example, the introduction of energetic factors allows us to predict the existence of a crossover molecular weight, below which an energetically unfavorable species at a surface can be enriched entirely due to architecture. For binary blends of linear chains, the degree of polymerization (Kuhn) of the energetically unfavorable species at the crossover point is r(c) congruent to 2U(e)/Delta U-s. Here, U-e is the attraction of chain ends towards the surface and Delta U-s is the difference in the interaction potential of main chain segments to the surface due to chemical differences and/or isotopic labeling. We also show that surface segregation of an additive in a host polymer due to architectural effects alone is significantly enhanced as the spinodal temperature of a branched/linear blend is approached. Detailed comparisons of the modified response theory with lattice simulations are used to evaluate the theory and to determine the limits of its applicability.
机译:我们已经将能量因子引入了Wu和Fredrickson [Macromolecules 29,7919(1996)]开发的响应理论中,以预测由于表面上的建筑效应而导致的支链分子的富集。这一发展同时增加了该理论在指导实验研究中的实用性,并使对同位素标记的线性/支化物种二元混合物在表面上进行仔细研究时,对理论预测进行严格评估成为可能。例如,高能因子的引入使我们能够预测交叉分子量的存在,低于该分子量,由于结构的原因,表面上能量上不利的物种可能会被完全富集。对于线性链的二元共混物,能量不利物种在交叉点的聚合度(Kuhn)为r(c)等于2U(e)/ Delta U-s。在此,U-e是链末端朝向表面的吸引力,而Delta U-s是由于化学差异和/或同位素标记导致的主链段与表面相互作用的电位差。我们还表明,随着接近支链/线性共混物的旋节线温度,仅由于建筑效应,添加剂在主体聚合物中的表面偏析就会大大增强。修改后的响应理论与晶格模拟的详细比较用于评估该理论并确定其适用范围。

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