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首页> 外文期刊>Nanoscale >Dissymmetrical tails-regulated helical nanoarchitectonics of amphiphilic ornithines: nanotubes, bundles and twists
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Dissymmetrical tails-regulated helical nanoarchitectonics of amphiphilic ornithines: nanotubes, bundles and twists

机译:不对称tails-regulated螺旋nanoarchitectonics两亲鸟氨酸:纳米管、包和扭曲

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How dissymmetrical tails (i.e. tails of different lengths) in one lipid molecule exert an impact on the structure and properties of the resulting assembly is an intriguing issue in both biological and material senses. However, the underlying mechanism that engenders such phenomena is still obscure, which prompted us to unmask it by exploring the self-assembly behaviours of artificial building blocks comprising dissymmetrical tails. Here, a series of Fmoc-protected ornithine lipids with dissymmetrical alkyl tails was designed and the dissymmetry of the two tails was found to hierarchically tune the self-assembled nanostructures from nanotubes to bundles and nanotwists. With the Fmoc-headgroup employed as a chromophorous probe, it was revealed that the alkyl chain dissymmetry controlled the interacting modes of van der Waals interactions between alkyl tails, π–π stacking between Fmoc motifs and hydrogen bonding formed by the three amide bonds in lipid bilayers. The counterbalance between those noncovalent interactions was responsible for such remarkable tuning ability towards self-assembly and emissive behaviours of the lipids, including circularly polarized light emission. This work provides insight into dissymmetrical tails-regulated biological structures and functions of natural lipids, and also sets up a novel strategy of rationally modulating chiral and emissive properties of supramolecular materials, i.e., tunable CPL materials, by exploitation of the tail dissymmetry.
机译:如何不对称尾(即反面的不同长度)在一个脂质分子施加影响由此产生的结构和性能组装是一个有趣的问题生物和材料的感官。产生这样的潜在机制现象仍然是模糊的,它促使我们通过探索自我组装揭开它行为的人工构建块由不对称尾巴。的Fmoc-protected鸟氨酸脂质不对称烷基尾和设计不对称的两个尾巴被发现分层次优化自组装从纳米管包和纳米结构nanotwists。chromophorous调查显示烷基链不对称控制互动模式的范德华相互作用之间的烷基反面,Fmoc之间的π-π堆积图案和氢键形成的三个酰胺债券脂质影响。之间的共价相互作用负责这样显著的优化能力对自组装和发射行为脂质,包括圆偏振光发射。不对称tails-regulated生物结构和功能的天然脂质,还设置一个合理的新策略调制的手性和发射特性超分子材料,例如,CPL可调材料、剥削的尾巴不对称。

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