Athiyarath Vignesh, Sureshan Kana M
School of Chemistry, Indian Institute of Science Education and Research, Thiruvananthapuram, Kerala, 695551, India.
Angew Chem Int Ed Engl. 2020 Sep 1;59(36):15580-15585. doi: 10.1002/anie.202006758. Epub 2020 Aug 11.
To synthesize a fully organic 1D polymer in a novel twist-stacked topology, we designed a peptide monomer HC≡CCH -NH-Ile-Leu-N , which crystallizes with its molecules H-bonded along a six-fold screw axis. These H-bonded columns pack parallelly such that molecules arrange head-to-tail, forming linear non-covalent chains in planes perpendicular to the screw axis. The chains arrange parallelly to form molecular layers which twist-stack along the screw axis. Crystals of this monomer, on heating, undergo single-crystal-to-single-crystal (SCSC) topochemical azide-alkyne cycloaddition (TAAC) polymerization to yield an exclusively 1,4-triazole-linked polymer in a twist-stacked layered topology. This topologically defined polymer shows better mechanical strength and thermal stability than its unordered form, as evidenced by nanoindentation studies and thermogravimetric analysis, respectively. This work illustrates the scope of topochemical polymerizations for synthesizing polymers in pre-decided topologies.
为了合成一种具有新型扭曲堆积拓扑结构的全有机一维聚合物,我们设计了一种肽单体HC≡CCH -NH-Ile-Leu-N,其分子沿六重螺旋轴通过氢键结晶。这些通过氢键连接的柱平行堆积,使得分子头对尾排列,在垂直于螺旋轴的平面内形成线性非共价链。这些链平行排列形成分子层,分子层沿螺旋轴扭曲堆积。该单体晶体在加热时会发生单晶到单晶(SCSC)的拓扑化学叠氮化物-炔烃环加成(TAAC)聚合反应,生成具有扭曲堆积层状拓扑结构的仅由1,4-三唑连接的聚合物。纳米压痕研究和热重分析分别表明,这种拓扑结构明确的聚合物比其无序形式具有更好的机械强度和热稳定性。这项工作说明了拓扑化学聚合在合成具有预先确定拓扑结构的聚合物方面的应用范围。