论文标题
在亚亚列克斯特(Angstrom
Time-resolved Imaging of Stochastic Cascade Reactions over a Submillisecond to Second Time Range at the Angstrom Level
论文作者
论文摘要
大多数化学反应是级联反应,其中一系列瞬态中间体在长时间内出现并随机消失。即使在超快泵探针实验中,这种反应的机制也很难研究。 [60]富勒烯产生短碳纳米管的范德华二聚体的二聚化是一种典型的级联反应,并且可能是碳材料化学中最常研究的。从理论上预测了多达23个中间体,但只有第一个稳定的中间体已经通过实验验证。借助快速电子显微镜,我们以每秒1600帧的最大帧速率获得了单个分子的摄影记录。使用Chambolle总变异算法处理和自动互相关图像匹配分析,我们报告了几个亚稳态中间体的形状和大小来识别。尽管反应事件随机发生,改变了每个中间体的寿命,但每个中间结构的平均寿命可以从级联反应的许多摄影图像的统计分析中获得。在最短的中间体中,我们检测到三个独立级联反应中持续不到3 ms的中间体。我们预计显微镜和图像处理的快速技术发展将很快启动化学反应的摄影研究时代。
Most chemical reactions are cascade reactions in which a series of transient intermediates appear and disappear stochastically over an extended period. The mechanisms of such reactions are challenging to study, even in ultrafast pump-probe experiments. The dimerization of a van der Waals dimer of [60]fullerene producing a short carbon nanotube is a typical cascade reaction and is probably the most frequently studied in carbon materials chemistry. As many as 23 intermediates were predicted by theory, but only the first stable one has been verified experimentally. With the aid of fast electron microscopy, we obtained cinematographic recordings of individual molecules at a maximum frame rate of 1600 frames per second. Using Chambolle total variation algorithm processing and automated cross-correlation image matching analysis, we report on the identification of several metastable intermediates by their shape and size. Although the reaction events occurred stochastically, varying the lifetime of each intermediate accordingly, the average lifetime for each intermediate structure could be obtained from statistical analysis of many cinematographic images for the cascade reaction. Among the shortest-living intermediates, we detected one that lasted for less than 3 ms in three independent cascade reactions. We anticipate that the rapid technological development of microscopy and image processing will soon initiate an era of cinematographic studies of chemical reactions.