Molecular Design and Function Group, Research Center for Macromolecules and Biomaterials, National Institute for Materials Science, Tsukuba, Ibaraki, Japan.
Electron Microscopy Group, Center for Basic Research on Materials, National Institute for Materials Science, Tsukuba, Ibaraki, Japan.
Nat Chem. 2023 Jul;15(7):922-929. doi: 10.1038/s41557-023-01216-y. Epub 2023 Jun 1.
Although the principles of noncovalent bonding are well understood and form the basis for the syntheses of many intricate supramolecular structures, supramolecular noncovalent synthesis cannot yet achieve the levels of precision and complexity that are attainable in organic and/or macromolecular covalent synthesis. Here we show the stepwise synthesis of block supramolecular polymers from metal-porphyrin derivatives (in which the metal centre is Zn, Cu or Ni) functionalized with fluorinated alkyl chains. These monomers first undergo a one-dimensional supramolecular polymerization and cyclization process to form a toroidal structure. Subsequently, successive secondary nucleation, elongation and cyclization steps result in two-dimensional assemblies with concentric toroidal morphologies. The site selectivity endowed by the fluorinated chains, reminiscent of regioselectivity in covalent synthesis, enables the precise control of the compositions and sequences of the supramolecular structures, as demonstrated by the synthesis of several triblock supramolecular terpolymers.
尽管非共价键的原理已经被很好地理解,并为许多复杂的超分子结构的合成提供了基础,但超分子非共价合成仍无法达到有机和/或高分子共价合成所能达到的精度和复杂性水平。在这里,我们展示了通过氟化烷基链功能化的金属卟啉衍生物(其中金属中心为 Zn、Cu 或 Ni)逐步合成嵌段超分子聚合物。这些单体首先经历一维超分子聚合和环化过程,形成环形结构。随后,连续的次级成核、延伸和环化步骤导致具有同心环形形态的二维组装体。氟代链赋予的位点选择性类似于共价合成中的区域选择性,能够精确控制超分子结构的组成和序列,这一点在几种三嵌段超分子共聚物的合成中得到了证明。