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通过溶液中的共价自组装形成独立的、单分子层厚的二维聚合物。

Free-standing, single-monomer-thick two-dimensional polymers through covalent self-assembly in solution.

机构信息

Center for Self-assembly and Complexity, Institute for Basic Science, Pohang, 790-784, Republic of Korea.

出版信息

J Am Chem Soc. 2013 May 1;135(17):6523-8. doi: 10.1021/ja4002019. Epub 2013 Apr 17.

Abstract

The design and synthesis of two-dimensional (2D) polymers is a challenging task, hitherto achieved in solution only through the aid of a solid surface "template" or preorganization of the building blocks in a 2D confined space. We present a novel approach for synthesizing free-standing, covalently bonded, single-monomer-thick 2D polymers in solution without any preorganization of building blocks on solid surfaces or interfaces by employing shape-directed covalent self-assembly of rigid, disk-shaped building blocks having laterally predisposed reactive groups on their periphery. We demonstrate our strategy through a thiol-ene "click" reaction between (allyloxy)12CB[6], a cucurbit[6]uril (CB[6]) derivative with 12 laterally predisposed reactive alkene groups, and 1,2-ethanedithiol to synthesize a robust and readily transferable 2D polymer. We can take advantage of the high binding affinity of fully protonated spermine (positive charges on both ends) to CB[6] to keep each individual polymer sheet separated from one another by electrostatic repulsion during synthesis, obtaining, for the first-time ever, a single-monomer-thick 2D polymer in solution. The arrangement of CB[6] repeating units in the resulting 2D polymer has been characterized using gold nanoparticle labeling and scanning transmission electron microscopy. Furthermore, we have confirmed the generality of our synthetic approach by applying it to different monomers to generate 2D polymers. Novel 2D polymers, such as our CB[6] derived polymer, may be useful in selective transport, controlled drug delivery, and chemical sensing and may even serve as well-defined 2D scaffolds for ordered functionalization and platforms for bottom-up 3D construction.

摘要

二维(2D)聚合物的设计和合成是一项具有挑战性的任务,迄今为止,仅通过固体表面“模板”的辅助或在 2D 受限空间中构建块的预组织,才能在溶液中实现。我们提出了一种新的方法,通过使用具有外围侧向预配的反应性基团的刚性、盘状构建块的形状导向共价自组装,在溶液中合成独立的、共价键合的、单单体厚的 2D 聚合物,而无需在固体表面或界面上对构建块进行任何预组织。我们通过(烯丙氧基)12CB[6](具有 12 个外围侧向预配的反应性烯基团的葫芦[6]脲(CB[6])衍生物)和 1,2-乙二硫醇之间的硫醇-烯“点击”反应证明了我们的策略,合成了一种坚固且易于转移的 2D 聚合物。我们可以利用完全质子化的 spermine(两端带正电荷)对 CB[6]的高结合亲和力,在合成过程中通过静电排斥使每个单独的聚合物片彼此分离,从而首次在溶液中获得单单体厚的 2D 聚合物。使用金纳米颗粒标记和扫描透射电子显微镜对所得 2D 聚合物中 CB[6]重复单元的排列进行了表征。此外,我们通过将其应用于不同的单体来生成 2D 聚合物,证实了我们合成方法的通用性。新型 2D 聚合物,如我们的 CB[6]衍生聚合物,可能在选择性传输、控制药物释放和化学传感方面有用,甚至可能作为有序功能化的明确 2D 支架和自下而上的 3D 构建的平台。

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