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选择性对能够进行A×A和A×B相互作用的AB型聚合物超分子聚合的影响。

Influence of selectivity on the supramolecular polymerization of AB-type polymers capable of Both A x A and A x B interactions.

作者信息

de Greef Tom F A, Ercolani Gianfranco, Ligthart G B W L, Meijer E W, Sijbesma Rint P

机构信息

Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

J Am Chem Soc. 2008 Oct 15;130(41):13755-64. doi: 10.1021/ja8046409. Epub 2008 Sep 19.

Abstract

The supramolecular polymerization of two AB-type monomers capable of hydrogen-bond-mediated A x B heterocoupling and A x A homocoupling is discussed. The AB-type supramolecular polymerization is based on the strong interaction between self-dimerizing 2-ureido-pyrimidinone (UPy) and 2,7-diamido-1,8-naphthyridine (NaPy). In an effort to reduce the "self-stoppered" effect that is inherently present in these supramolecular polymerizations we used a novel ureido-pyrimidinone substituted with a dibutylamino group at the pyrimidinone ring. As a result of the substitution, the dimerization constant of the novel UPy unit is lowered compared to the previous UPy unit while the heterodimerization strength is retained. Unexpectedly, the increased selectivity toward heteroassociation not only influences the concentration-dependent degree of polymerization due to reduction of the "self-stoppered" effect but also has a pronounced effect on the ring-chain equilibrium by increasing the tendency to cyclize. In order to quantitatively explain our results, a model was developed that accurately predicts the degree of polymerization by taking into account homo- and heterodimerization as well as cyclization. Finally, molecular weight distributions for noncyclizing AB supramolecular polymerizations with and without a reversible A x A interaction are calculated. It is found that the molecular weight distribution becomes narrower when A x A interactions are present.

摘要

讨论了两种能够通过氢键介导进行AxB异质偶联和AxA同质偶联的AB型单体的超分子聚合反应。AB型超分子聚合反应基于自二聚化的2-脲基嘧啶酮(UPy)和2,7-二氨基-1,8-萘啶(NaPy)之间的强相互作用。为了减少这些超分子聚合反应中固有的“自终止”效应,我们使用了一种在嘧啶酮环上被二丁基氨基取代的新型脲基嘧啶酮。由于这种取代,新型UPy单元的二聚常数与之前的UPy单元相比有所降低,而异二聚化强度得以保留。出乎意料的是,对异质缔合增加的选择性不仅由于“自终止”效应的降低而影响浓度依赖性聚合度,还通过增加环化倾向对环链平衡产生显著影响。为了定量解释我们的结果,开发了一个模型,该模型通过考虑同二聚化、异二聚化以及环化来准确预测聚合度。最后,计算了有无可逆AxA相互作用的非环化AB超分子聚合反应的分子量分布。结果发现,当存在AxA相互作用时,分子量分布会变窄。

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