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Equilibrium polymerization models of re-entrant self-assembly

机译:重入自组装的平衡聚合模型

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As is well known, liquid-liquid phase separation can occur either upon heating or cooling, corresponding to lower and upper critical solution phase boundaries, respectively. Likewise, self-assembly transitions from a monomeric state to an organized polymeric state can proceed either upon increasing or decreasing temperature, and the concentration dependent ordering temperature is correspondingly called the “floor” or “ceiling” temperature. Motivated by the fact that some phase separating systems exhibit closed loop phase boundaries with two critical points, the present paper analyzes self-assembly analogs of re-entrant phase separation, i.e., re-entrant self-assembly. In particular, re-entrant self-assembly transitions are demonstrated to arise in thermally activated equilibrium self-assembling systems, when thermal activation is more favorable than chain propagation, and in equilibrium self-assembly near an adsorbing boundary where strong competition exists between adsorption and self-assembly. Apparently, the competition between interactions or equilibria generally underlies re-entrant behavior in both liquid-liquid phase separation and self-assembly transitions.
机译:众所周知,液-液相分离可以在加热或冷却时发生,分别对应于临界溶液的上下边界。同样,自单体状态到有组织的聚合物状态的自组装转变可以在温度升高或降低时进行,并且浓度依赖性有序温度相应地称为“底”或“顶”温度。由于某些相分离系统表现出具有两个临界点的闭环相边界的事实,本论文分析了可重入相分离的自组装类似物,即可重入自组装。特别是,当热活化比链增长更有利时,在热活化平衡自组装系统中,以及在吸附边界附近的平衡自组装(其中吸附与吸附之间存在强烈竞争)的平衡自组装系统中,会出现折返自组装转变。自组装。显然,相互作用或平衡之间的竞争通常是液-液相分离和自组装转变过程中折返行为的基础。

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