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TRICRITICAL POINTS IN BIMODAL POLYMER SOLUTIONS

机译:双峰聚合物溶液中的三点

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The tricritical point of polymer solutions composed by two polymer homologs of different molecular weight in a solvent is studied using the single-chain mean-field theory. The tricritical point is found for a ratio of molecular weights of the two polymers r=N-1/N-2, which decreases as a function of the short chain length N-2 from 51 to approximately 40 for N-2 increasing from 1 to 8. This last value is still much larger than the experimentally measured value for mixtures of polystyrene in cyclohexane, where it was found that r similar or equal to 25. Although a further reduction of r as a function of N-2 seems likely, the chain lengths of the corresponding long chains are beyond the reliability limit of the SAW's simulation involved. The addition of a small effective repulsion between the polymer homologs, is found to bring down the predicted value to 25. (C) 1996 American Institute of Physics. [References: 24]
机译:使用单链平均场理论研究了由溶剂中两种不同分子量的聚合物同系物组成的聚合物溶液的三临界点。对于两种聚合物的分子量比r = N-1 / N-2,发现了三临界点,其随短链长度N-2的函数从51降低至对于N-2的分子量比从1增加到大约40到8。该最后一个值仍比聚苯乙烯在环己烷中的混合物的实验测量值大得多,在该实验中,发现r等于或等于25。尽管r可能会进一步降低为N-2的函数,相应的长链的链长超出了SAW所涉及模拟的可靠性极限。发现在聚合物同系物之间添加小的有效排斥力将预测值降低到25。(C)1996年美国物理研究所。 [参考:24]

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