Chen Zhen, Suzuki Yukinaga, Imayoshi Ayumi, Ji Xiaofan, Rao Kotagiri Venkata, Omata Yuki, Miyajima Daigo, Sato Emiko, Nihonyanagi Atsuko, Aida Takuzo
RIKEN Center for Emergent Matter Science, Wako, Saitama, Japan.
Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.
Nat Mater. 2022 Feb;21(2):253-261. doi: 10.1038/s41563-021-01122-z. Epub 2021 Oct 14.
Solvent-free chemical manufacturing is one of the awaited technologies for addressing an emergent issue of environmental pollution. Here, we report solvent-free autocatalytic supramolecular polymerization (SF-ASP), which provides an inhibition-free template-assisted catalytic organic transformation that takes great advantage of the fact that the product (template) undergoes a termination-free nucleation-elongation assembly (living supramolecular polymerization) under solvent-free conditions. SF-ASP allows for reductive cyclotetramerization of hydrogen-bonding phthalonitriles into the corresponding phthalocyanines in exceptionally high yields (>80%). SF-ASP requires the growing polymer to form hexagonally packed crystalline fibres, which possibly preorganize the phthalonitriles at their cross-sectional edges for their efficient transformation. With metal oleates, SF-ASP produces single-crystalline fibres of metallophthalocyanines again in exceptionally high yields, which grow in both directions without terminal coupling until the phthalonitrile precursors are completely consumed. By taking advantage of this living nature of polymerization, multistep SF-ASP without/with metal oleates allows for the precision synthesis of multi-block supramolecular copolymers.
无溶剂化学制造是解决环境污染这一紧迫问题所期待的技术之一。在此,我们报道了无溶剂自催化超分子聚合(SF-ASP),它提供了一种无抑制的模板辅助催化有机转化,充分利用了产物(模板)在无溶剂条件下进行无终止的成核-伸长组装(活性超分子聚合)这一事实。SF-ASP能使氢键邻苯二甲腈以极高的产率(>80%)还原环四聚化为相应的酞菁。SF-ASP要求生长的聚合物形成六方堆积的结晶纤维,这可能会在其横截面边缘预组织邻苯二甲腈以实现高效转化。对于金属油酸盐,SF-ASP再次以极高的产率生成金属酞菁的单晶纤维,其在两个方向上生长而无末端偶联,直到邻苯二甲腈前体完全消耗。利用这种聚合的活性特性,有无金属油酸盐的多步SF-ASP允许精确合成多嵌段超分子共聚物。