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首页> 外文期刊>Angewandte Chemie >Isotopic Labelling of Confined Carbyne
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Isotopic Labelling of Confined Carbyne

机译:InsoTopic标记由密闭的速滑

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摘要

Carbyne is a one-dimensional allotrope of carbon consisting of a linear chain of carbon atoms bonded to each other with exceptional strength. Its outstanding mechanical, optical, and electronic properties have been theoretically predicted, but its stability has only been achieved when grown encapsulated in the hollow core of carbon nanotubes. One of the advantages of this confinement is that its properties can be controlled by the chain's length and surrounding environment. We investigated an alternative way of gaining control of its properties is using isotope labelling as tuning mechanism. The optimized liquid precursor was first chosen among several options, which can greatly enhance the yield of the confined carbyne. Then isotopic labelled liquid precursor was encapsulated for further synthesis of isotopic labelled confined carbyne. This allowed us to obtain pioneering results on isotope engineered carbyne with around 11.9 % of C-13-labelling using C-13-methanol as precursor.
机译:碳炔是碳的一维同素异形体,由碳原子的线性链组成,这些碳原子以非凡的强度相互结合。理论上已经预测了其优异的机械、光学和电子性能,但只有在封装在碳纳米管空心芯中生长时,才能实现其稳定性。这种限制的优点之一是,其特性可以由链的长度和周围环境控制。我们研究了另一种控制其性质的方法,即使用同位素标记作为调节机制。在几种方案中,首先选择了优化的液体前驱体,这可以大大提高受限碳炔的收率。然后封装同位素标记的液体前驱体,进一步合成同位素标记的受限卡宾。这使我们能够在同位素工程碳炔方面获得开创性的结果,使用C-13-甲醇作为前体,约有11.9%的C-13-标记。

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