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“制作分子电影”:第一帧

'Making the molecular movie': first frames.

作者信息

Miller R J Dwayne, Ernstorfer Ralph, Harb Maher, Gao Meng, Hebeisen Christoph T, Jean-Ruel Hubert, Lu Cheng, Moriena Gustavo, Sciaini German

机构信息

Department of Chemistry, and Institute for Optical Sciences, University of Toronto, 80 St George Street, Toronto, Ontario, Canada M5S 3H6.

出版信息

Acta Crystallogr A. 2010 Mar;66(Pt 2):137-56. doi: 10.1107/S0108767309053926. Epub 2010 Feb 9.

Abstract

Recent advances in high-intensity electron and X-ray pulsed sources now make it possible to directly observe atomic motions as they occur in barrier-crossing processes. These rare events require the structural dynamics to be triggered by femtosecond excitation pulses that prepare the system above the barrier or access new potential energy surfaces that drive the structural changes. In general, the sampling process modifies the system such that the structural probes should ideally have sufficient intensity to fully resolve structures near the single-shot limit for a given time point. New developments in both source intensity and temporal characterization of the pulsed sampling mode have made it possible to make so-called 'molecular movies', i.e. measure relative atomic motions faster than collisions can blur information on correlations. Strongly driven phase transitions from thermally propagated melting to optically modified potential energy surfaces leading to ballistic phase transitions and bond stiffening are given as examples of the new insights that can be gained from an atomic level perspective of structural dynamics. The most important impact will likely be made in the fields of chemistry and biology where the central unifying concept of the transition state will come under direct observation and enable a reduction of high-dimensional complex reaction surfaces to the key reactive modes, as long mastered by Mother Nature.

摘要

高强度电子和X射线脉冲源的最新进展,现在使得直接观察原子在势垒穿越过程中发生的运动成为可能。这些罕见事件需要由飞秒激发脉冲触发结构动力学,这些脉冲将系统制备到势垒之上或进入驱动结构变化的新势能面。一般来说,采样过程会改变系统,因此结构探针理想情况下应具有足够的强度,以便在给定时间点完全分辨接近单次测量极限的结构。脉冲采样模式的源强度和时间表征方面的新进展,使得制作所谓的“分子电影”成为可能,即测量相对原子运动的速度比碰撞模糊相关性信息的速度更快。从热传播熔化到光学修改的势能面导致弹道相变和键硬化的强驱动相变,作为从结构动力学的原子层面视角可以获得的新见解的例子给出。最重要的影响可能会出现在化学和生物学领域,在这些领域中,过渡态的核心统一概念将受到直接观察,并能够将高维复杂反应面简化为关键反应模式,这是大自然长期以来所掌握的。

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