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首页> 外文期刊>Angewandte Chemie >Orientation Control of Molecularly Functionalized Surfaces Applied to the Simultaneous Alignment and Sorting of Carbon Nanotubes
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Orientation Control of Molecularly Functionalized Surfaces Applied to the Simultaneous Alignment and Sorting of Carbon Nanotubes

机译:分子官能化表面的取向控制施加到碳纳米管同时对准和分选

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摘要

Self-assembly has been relied upon for molecular alignment in many advanced technological applications. However, although effective, it is inherently limited in its capability for optimization. Despite the potential benefits, the seemingly fundamental strategy of external orientation control has yet to be realized. Herein we demonstrate an approach that allows control of the orientation of small molecules covalently bound to a surface. The method exploits an alignment relay technique, passing alignment information through a liquid-crystal medium to small molecules to control surface functionalization events. The method is technically simple and can be carried out on a bench top without the need for specialized equipment. Moreover, we demonstrate the utility of the resulting surfaces to address two long-standing problems in nanoscience: the sorting and alignment of single-walled carbon nanotubes. This new method enabled significant alignment of the nanotubes as well as length and diameter sorting.
机译:已经依赖于许多先进技术应用中的分子对准自组装。然而,虽然有效,但它在其优化能力中具有本质上限。尽管存在潜在的好处,但外线控制的看似基本的策略尚未实现。在此,我们证明了一种方法,允许控制共价结合到表面的小分子的取向。该方法利用对准继电器技术,通过液晶介质将对准信息传递给小分子以控制表面官能化事件。该方法技术上简单,可以在台式上进行,无需专门设备。此外,我们证明了所得表面的效用,以解决纳米科学中的两个长期问题:单壁碳纳米管的分选和对准。这种新方法使纳米管和长度和直径分选的显着对准。

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