首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Double‐Gyroid Nanostructure Formation by Aggregation‐Induced Atropisomerization and Co‐Assembly of Ionic Liquid‐Crystalline Amphiphiles
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Double‐Gyroid Nanostructure Formation by Aggregation‐Induced Atropisomerization and Co‐Assembly of Ionic Liquid‐Crystalline Amphiphiles

机译:离子液体-结晶两亲物的聚集诱导的Atropisomerization和共组装形成双Gyroid纳米结构。

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摘要

We report a new molecular‐design principle for creating double‐gyroid nanostructured molecular assemblies based on atropisomerization. Ionic amphiphiles containing two imidazolium rings close to each other were designed and synthesized. NMR data revealed that the rotation of the imidazolium rings is restricted, with an activation energy as high as 63 kJ mol in DMSO‐d solution (DFT prediction for a model compound in the vacuum: 90–100 kJ mol ). Due to the restricted rotation, the amphiphiles feature “double” atropisomeric axes in their ionic segments and form three stable atropisomers: , , and . These isomers co‐organize into ‐type bicontinuous cubic liquid‐crystalline mesophases through nanosegregation of the ionic and non‐ionic parts. Considering the intrinsic characteristic of ‐type bicontinuous cubic structures that they are composed of intertwined right‐ and left‐handed single gyroids, we propose that the simultaneous presence of both ‐ and ‐atropisomers is an important contributor to the formation of double‐gyroid structures.
机译:我们报告了一种新的分子设计原理,用于基于阻转异构化来创建双螺旋纳米结构分子组装体。设计并合成了包含两个彼此靠近的咪唑鎓环的离子两亲物。 NMR数据显示,咪唑环的旋转受到限制,在DMSO-d溶液中的活化能高达63 kJ mol(在真空中对模型化合物的DFT预测为:90-100 kJ mol)。由于旋转受限,两亲分子在其离子链段中具有“双”阻转异构体轴,并形成三个稳定的阻转异构体:,和。这些异构体共同组成通过离子和非离子部分的纳米分离形成的双连续立方液晶中间相。考虑到内在特征由双螺旋形右旋和左旋螺旋形组成的双连续立方结构,我们建议同时存在两种形式的阻转异构体是形成双螺旋结构的重要原因。

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