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Supramolecular chirality and crystallization from biocatalytic self-assembly in lipidic cubic mesophases

机译:超分子手性和结晶在油脂的立方biocatalytic自组装采用小

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Biocatalytic self-assembly in a nanoconfined environment is widely used in nature to construct complex structures that endow special characteristics to life. There is tremendous interest in mimicking such bottom-up processes to fabricate functional materials. In this study, we have investigated a novel biomimetic scaffold based on lipidic cubic mesophases (LCMs), which provide a special nanoconfined environment for biocatalytic self-assembly and subsequent formation of organic crystals. (R)-Benzoin generated in situ from benzaldehyde in a reaction catalyzed by the enzyme benzaldehyde lyase (BAL) exhibits - when confined within LCMs - enhanced chirality compared to (R)-benzoin in solution or (R)-benzoin-doped LCMs. We infer that a metastable state is formed under kinetic control that displays enhanced supramolecular chirality. As they age, these metastable structures can further grow into thermodynamically stable crystals. The biomimetic, nanoconfined environment provided by the LCMs plays a key role in the development of supramolecular chirality and subsequent crystallization.
机译:nanoconfined Biocatalytic自组装环境在本质上是广泛使用的结构赋予特殊的复杂的结构生命特征。兴趣模仿这种自下而上的过程制备功能材料。研究一种新型仿生支架吗根据油脂的立方采用(LCMs)提供一个特殊nanoconfined环境biocatalytic自组装和随后的有机晶体的形成。原位生成苯甲醛的反应由酶催化苯甲醛裂合酶(BAL)展品——当局限在LCMs增强手性比(R)在解决方案或安息香-benzoin-doped LCMs (R)。亚稳状态下形成的动力学控制显示增强的超分子手性。随着年龄的增长,这些亚稳结构进一步发展成热力学稳定晶体。LCMs提供的环境中发挥着关键作用在超分子手性的发展和随后的结晶。

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