首页> 外文期刊>Journal of the American Chemical Society >Tunable Adhesion from Stoichiometry-Controlled and Sequence-Defined Supramolecular Polymers Emerges Hierarchically from Cyanostar-Stabilized Anion-Anion Linkages
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Tunable Adhesion from Stoichiometry-Controlled and Sequence-Defined Supramolecular Polymers Emerges Hierarchically from Cyanostar-Stabilized Anion-Anion Linkages

机译:从化学计量控制和序列定义的超分子聚合物的可调整的粘附性从Cyanostar稳定的阴离子-阴离子键联层次地出现。

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Sequence-controlled supramolecular polymers offer new design paradigms for generating stimuli-responsive macromolecules with enhanced functionalities. The dynamic character of supramolecular links present challenges to sequence definition in extended supramolecular macromolecules, and design principles remain nascent. Here, we demonstrate the first example of using stoichiometry-control to specify the monomer sequence in a linear supramolecular polymer by synthesizing both a homopolymer and an alternating copolymer from the same glycol-substituted cyanostar macrocycle and phenylene-linked diphosphate monomers. A 2:1 stoichiometry between macrocycle and diphosphate produces a supramolecular homopolymer of general formula (A)_n comprised of repeating units of cyanostar-stabilized phosphate—phosphate dimers. Using a 1:1 stoichiometry, an alternating (AB)_n structure is produced with half the phosphate dimers now stabilized by the additional counter cations that emerge hierarchically after forming the stronger cyanostar-stabilized phosphate dimers. These new polymer materials and binding motifs are sufficient to bear normal and shear stress to promote significant and tunable adhesive properties. The homopolymer (A)_n, consisting of cyanostar-stabilized anti-electrostatic linkages, shows adhesion strength comparable to commercial superglue formulations based on polycyanoacrylate but is thermally reversible. Unexpectedly, and despite including traditional ionic linkages, the alternating copolymer (AB)_n shows weaker adhesion strength more similar to commercial white glue based on poly(vinyl acetate). Thus, the adhesion properties can be tuned over a wide range by simply controlling the stoichiometric ratio of monomers. This study offers new insight into supramolecular polymers composed of custom-designed anion and receptor monomers and demonstrates the utility of emerging functional materials based on anion—anion linkages.
机译:序列控制的超分子聚合物为产生具有增强功能的刺激响应性大分子提供了新的设计范例。超分子连接的动态特性对扩展的超分子大分子中的序列定义提出了挑战,并且设计原理仍处于萌芽状态。在这里,我们展示了使用化学计量控制来指定线性超分子聚合物中的单体序列的第一个例子,该合成是由相同的乙二醇取代的cyanostar大环和亚苯基连接的二磷酸酯单体合成均聚物和交替共聚物。大环与二磷酸酯之间的化学计量比为2:1,可产生通式(A)_n的超分子均聚物,其由氰基星稳定的磷酸酯-磷酸酯二聚体的重复单元组成。使用1:1的化学计量比,将产生交替的(AB)_n结构,其中一半的磷酸盐二聚体现在由形成强氰基稳定的磷酸盐二聚体后逐渐出现的其他抗衡阳离子稳定。这些新的聚合物材料和粘合图案足以承受法向应力和剪切应力,从而促进显着且可调节的粘合性能。由氰基星形稳定的抗静电键组成的均聚物(A)_n具有与基于聚氰基丙烯酸酯的市售超强胶配方相当的粘合强度,但具有热可逆性。出乎意料的是,尽管包括传统的离子键,但交替共聚物(AB)_n显示出较弱的粘合强度,与基于聚乙酸乙烯酯的商用白胶更相似。因此,通过简单地控制单体的化学计量比,可以在很宽的范围内调节粘合性能。这项研究为由定制设计的阴离子和受体单体组成的超分子聚合物提供了新的见解,并证明了基于阴离子-阴离子键的新兴功能材料的实用性。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第5期|2579-2591|共13页
  • 作者

  • 作者单位

    Department of Chemistry Indiana University Bloomington Indiana 47405 United States;

    School of Polymer Science and Engineering The University of Southern Mississippi Hattiesburg Mississippi 39406 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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