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原子水平上 fullerene 二聚反应的反应性和选择性分析。

Analysis of the reactivity and selectivity of fullerene dimerization reactions at the atomic level.

机构信息

Nanotube Research Centre, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8565 Japan.

出版信息

Nat Chem. 2010 Feb;2(2):117-24. doi: 10.1038/nchem.482. Epub 2010 Jan 10.

Abstract

High-resolution transmission electron microscopy has proved useful for its ability to provide time-resolved images of small molecules and their movements. One of the next challenges in this area is to visualize chemical reactions by monitoring time-dependent changes in the atomic positions of reacting molecules. Such images may provide information that is not available with other experimental methods. Here we report a study on bimolecular reactions of fullerene and metallofullerene molecules inside carbon nanotubes as a function of electron dose. Images of how the fullerenes move during the dimerization process reveal the specific orientations in which two molecules interact, as well as how bond reorganization occurs after their initial contact. Studies on the concentration, specimen temperature, effect of catalyst and accelerating voltage indicate that the reactions can be imaged under a variety of conditions.

摘要

高分辨率透射电子显微镜因其能够提供小分子及其运动的时间分辨图像而被证明是有用的。该领域的下一个挑战之一是通过监测反应分子的原子位置随时间的变化来可视化化学反应。这些图像可能提供其他实验方法无法获得的信息。在这里,我们报告了在碳纳米管内富勒烯和金属富勒烯分子的双分子反应作为电子剂量函数的研究。在二聚化过程中富勒烯如何移动的图像揭示了两个分子相互作用的特定取向,以及它们初始接触后键重组是如何发生的。对浓度、试样温度、催化剂和加速电压的影响的研究表明,在各种条件下都可以对反应进行成像。

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