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由通过多个氢键阵列连接的异互补单体生成的超分子聚合物——形成、表征及性质

Supramolecular polymers generated from heterocomplementary monomers linked through multiple hydrogen-bonding arrays--formation, characterization, and properties.

作者信息

Berl Volker, Schmutz Marc, Krische Michael J, Khoury Richard G, Lehn Jean-Marie

机构信息

Laboratoire de Chimie Supramoléculaire, ESA 7006-CNRS, ISIS, Université Louis Pasteur, 4 rue Blaise Pascal, 67000 Strasbourg, France.

出版信息

Chemistry. 2002 Mar 1;8(5):1227-44. doi: 10.1002/1521-3765(20020301)8:5<1227::aid-chem1227>3.0.co;2-0.

Abstract

Supramolecular polymers are described that are derived from the association of two homoditopic heterocomplementary monomers through sextuple hydrogen-bonding arrays. They form fibers and a variety of different materials depending on the conditions. The strong affinity of the DAD-DAD (D=donor, A=acceptor) hydrogen-bonding sites for double-faced cyanuric acid type wedges drives the supramolecular polymeric assembly in apolar and chlorinated organic solvents. The marked influence of stoichiometry, as well as end-capping and cross-linking agents upon fiber formation is revealed in solution and by electron microscopy (EM). The results further contribute to the development of a supramolecular polymer chemistry that comprises reversible polymers formed through recognition-controlled noncovalent connections between the molecular components. Such materials are, by nature, dynamic and present adaptive character in view of their ability to respond to external stimuli.

摘要

描述了一种超分子聚合物,它由两种同二齿异互补单体通过六重氢键阵列缔合而成。根据条件的不同,它们会形成纤维和各种不同的材料。DAD-DAD(D = 供体,A = 受体)氢键位点对双面氰尿酸型楔块具有很强的亲和力,这促使超分子聚合物在非极性和氯化有机溶剂中进行组装。通过溶液和电子显微镜(EM)揭示了化学计量比以及封端剂和交联剂对纤维形成的显著影响。这些结果进一步推动了超分子聚合物化学的发展,该化学包括通过分子组分之间基于识别控制的非共价连接形成的可逆聚合物。从本质上讲,这类材料具有动态性,鉴于它们能够对外部刺激做出响应,因而具有适应性特征。

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