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Tuning the size and configuration of nanocarbon microcapsules: aqueous method using optical tweezers

机译:调整纳米碳微囊的大小和构型:使用光镊的水性方法

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摘要

To date, optical manipulation techniques for aqueous dispersions have been developed that deposit and/or transport nanoparticles not only for fundamental studies of colloidal dynamics, but also for either creating photonic devices or allowing accurate control of liquids on micron scales. Here, we report that optical tweezers (OT) system is able to direct three-dimensional assembly of graphene, graphite, and carbon nanotubes (CNT) into microcapsules of hollow spheres. The OT technique facilitates both to visualize the elasticity of a CNT microcapsule and to arrange a triplet of identical graphene microcapsules in aqueous media. Furthermore, the similarity of swelling courses has been found over a range of experimental parameters such as nanocarbon species, the power of the incident light, and the suspension density. Thanks to the universality in evolutions of rescaled capsule size, we can precisely control the size of various nanocarbon microcapsules by adjusting the duration time of laser emission.
机译:迄今为止,已经开发了用于水分散体的光学操作技术,其不仅用于胶体动力学的基础研究,而且用于创建光子装置或允许以微米级精确控制液体的沉积和/或运输纳米颗粒。在这里,我们报告光镊(OT)系统能够将石墨烯,石墨和碳纳米管(CNT)的三维组装定向到空心球的微囊中。 OT技术有利于可视化CNT微胶囊的弹性并在水性介质中排列相同石墨烯微胶囊的三重态。此外,已经在一系列实验参数(例如纳米碳物质,入射光的功率和悬浮液密度)上发现了膨胀过程的相似性。由于重新缩放的胶囊尺寸具有通用性,因此我们可以通过调整激光发射的持续时间来精确控制各种纳米碳微胶囊的尺寸。

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