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首页> 外文期刊>Nature reviews Cancer >In Situ Observation of Chiral Symmetry Breaking in NaClO3 Chiral Crystallization Realized by Thermoplasmonic Micro-Stirring
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In Situ Observation of Chiral Symmetry Breaking in NaClO3 Chiral Crystallization Realized by Thermoplasmonic Micro-Stirring

机译:原位观察热正压微搅拌实现NaClO3手性结晶中的手性对称性

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摘要

We have found that large chiral symmetry breaking in chiral crystallization can be achieved by irradiating a several milliwatts focused laser to a plasmonic nanolattice immersed in a stagnant NaClO3 saturated aqueous solution. Several hundreds of chiral crystals with the same handedness showed up in the solution after the laser irradiation in contrast to spontaneous crystallization. In situ microscopic observation for the early stage of the crystallization in the vicinity of the focal spot revealed that microbubble generation followed by large supersaturation increase, in which supersaturation reaches 360%, promotes several numbers of crystal nucleation in the vicinity of the bubble as "mother" crystal. The generation of the microbubble induced Marangoni convection, the velocity of which reaches several hundreds of micrometers per second, crushing the first appearing chiral crystal into pieces by microfluidic shear. Namely, secondary nucleation caused by microfluidic shear amplified the number of "daughter" crystals with the same handedness. This spatiotemporally controllable micromixing experiment realized by laser irradiation gives us not only a novel route bridging a light and chiral symmetry breaking but also the novel method to observe the early stage dynamics of the secondary nucleation, which was hard to observe by conventional observation technique, in real time.
机译:我们发现通过照射几毫瓦聚焦激光至浸入停滞的NaClO3饱和水溶液中的等离子体纳米型,可以实现细胞结晶中的大的手性对称性。在激光照射与自发结晶对比之后,在溶液中出现了几百个手性晶体。原位显微镜观察结晶在焦点附近的结晶早期显示,微泡生成随后增加过饱和度,其中过饱和率达到360%,促进了泡沫附近的几个晶体成核作为“母亲“ 水晶。微泡诱导Margononi对流的产生,其速度为每秒达到数百微米,通过微流体剪切将首先出现的手性晶体粉碎成片。即,由微流体剪切引起的次要成核扩增了具有相同手性的“女儿”晶体的数量。激光照射实现的这种时空可控的微混合实验使我们不仅为我们提供了一种新的路线桥接光和手性对称性,而且观察次要成核早期动态的新方法,这是常规观察技术的难以观察到的即时的。

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