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首页> 外文期刊>Crystal growth & design >Macrocyclic Diacetylene-Terthiophene Cocrystal: Molecular Self-Assembly, Topochemical Polymerization, and Energy Transfer
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Macrocyclic Diacetylene-Terthiophene Cocrystal: Molecular Self-Assembly, Topochemical Polymerization, and Energy Transfer

机译:大环二乙炔 - 立噻吩cocrystal:分子自组装,类别化学聚合和能量转移

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The macrocyclic structure offers direction-control self-assembly to generate columnar supramolecular architectures with a guest molecule-accessible interior cavity. Owing to the pi-pi stacking characteristic and photopolymerizable feature of the diacetylenic template, macrocyclic diacetylenes (MCDAs) have emerged as an intriguing molecular design for constructing arrays of covalently connected nanochannels. The energy transfer mechanism by engineering host-guest cocrystals of self-assembling pi-electron-rich motifs has been widely accepted for devising organic electronics. A highly fluorescent and polymerizable cocrystal of macrocyclic diacetylene-terthiophene (MCDA-3T) was constructed. Single-crystal X-ray diffraction analysis reveals well-ordered columnar assembly of MCDA with stacking geometry close-to-ideal packing parameters preferred for the topochemical polymerization. Inspection of the extended crystal packing pattern and by elemental analysis confirms the inclusion of the 3T guest in outer-space positioned along the parallel-packed MCDA columns, resulting in an array of nanochannels. UV-induced polymerization of MCDA-3T cocrystal transforms into covalently cross-linked PDAs and displays Forster resonance energy transfer behavior between fluorescent 3T and conjugated PDA polymer. The energy transfer phenomenon observed with the tubular PDA and oligothiophenes should be useful in the design of new energy harvesting functional supramolecules.
机译:宏环结构提供方向控制自组装,以产生具有访客分子可接近的内腔的柱状超分子架构。由于二乙炔模板的PI-PI堆叠特性和可光聚合特征,宏环二乙炔(MCDAs)被出现为用于构造共价连接的纳米纳米阵列的诱人的分子设计。通过工程宿主 - 客体富含自组装PI-Electron-Cocifs的能源转移机制已被广泛接受设计有机电子产品。构建了高荧光和可聚合的丙二酰二乙烯 - 萜烯(MCDA-3T)的高荧光和可聚合的COCRYSTAL。单晶X射线衍射分析揭示了MCDA的良好有序的柱状组件,其具有堆叠几何近似理想的填充参数,优选用于Topochemical聚合。延长晶体填料图案的检查和通过元素分析证实将3T的客体纳入沿着并联包装的MCDA柱定位的外部空间中,导致纳米纳米阵列阵列。紫外线诱导的MCDA-3T COCRYSTAL的聚合转化为共价交联的PDA,并显示荧光3T和缀合的PDA聚合物之间的福尔斯特共振能量转移行为。用管状PDA和寡核蛋白观察到的能量转移现象应在设计新的能量收集功能超分子中。

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