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Features that make macromolecules 2D polymers

机译:制作大分子2D聚合物的功能

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The article compares two-dimensional (2D) polymers with their congeners, the abundantly available linear polymers (1D) to show that both kinds of macromolecules are in fact polymer molecules. Repeat units and end (or edge) groups fully describe both kinds of structures. Both structures are obtainable as individual entities. Growth mechanisms well known for 1D polymers have now also been either elucidated or postulated for the first few 2D polymers. 2D copolymers are accessible by reacting different monomers in different feed ratios. Molar masses and molar mass distributions are obtainable when analysing 2D polymers in monolayer sheet form. The author therefore concludes that 2D polymers are in fact polymer molecules, very much as their linear 1D counterparts and that both kinds of structures therefore belong in this very subcategory of macromolecules. Dimensionality differences come with significant property differences and may therefore justify dividing the subcategory ?polymer molecules? further into 1D, 2D and ? in the near future - 3D polymer molecules. In terms of materials, 2D polymers establish a subclass of organic 2D materials with the unique characteristic of meeting the conditions for polymer molecules.
机译:该物品将二维(2D)聚合物与其同一型器进行比较,所以可用的线性聚合物(1D)表明两种大分子都是聚合物分子。重复单位和结束(或边缘)组完全描述两种结构。这两个结构都可以作为个体实体获得。目前也已知为1D聚合物的生长机制也被阐明或假设了前几种2D聚合物。通过在不同的饲料比中反应不同的单体来获得2D共聚物。当在单层板形式中分析2D聚合物时,可以获得摩尔质量和摩尔质量分布。因此,作者得出结论,2D聚合物实际上是聚合物分子,非常像它们的线性1D对应物,因此两种结构都属于大分子的这种非常子类别。维度差异具有重要的性质差异,因此可以证明分割子类别Δ聚合物分子?进一步进入1D,2D和?在不久的将来 - 3D聚合物分子。在材料方面,2D聚合物建立有机2D材料的亚类,其特征在于满足聚合物分子条件的特征。

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