Cinematographic study of stochastic chemical events at atomic resolution.

Koji Harano, Takayuki Nakamuro, Eiichi Nakamura
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Abstract

The advent of single-molecule atomic-resolution time-resolved electron microscopy (SMART-EM) has created a new field of 'cinematic chemistry,' allowing for the cinematographic recording of dynamic behaviors of organic and inorganic molecules and their assembly. However, the limited electron dose per frame of video images presents a major challenge in SMART-EM. Recent advances in direct electron counting cameras and techniques to enhance image quality through the implementation of a denoising algorithm have enabled the tracking of stochastic molecular motions and chemical reactions with sub-millisecond temporal resolution and sub-angstrom localization precision. This review showcases the development of dynamic molecular imaging using the SMART-EM technique, highlighting insights into nanomechanical behavior during molecular shuttle motion, pathways of multistep chemical reactions, and elucidation of crystallization processes at the atomic level.

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原子分辨率下随机化学事件的电影摄影研究。
单分子原子分辨率时间分辨电子显微镜(SMART-EM)的出现创造了一个新的“电影化学”领域,允许用电影记录有机和无机分子及其组装的动态行为。然而,每帧视频图像的有限电子剂量是SMART-EM的一个主要挑战。直接电子计数相机和通过实施去噪算法来提高图像质量的技术的最新进展使得能够以亚毫秒的时间分辨率和亚埃的定位精度跟踪随机分子运动和化学反应。这篇综述展示了使用SMART-EM技术的动态分子成像的发展,强调了对分子穿梭运动过程中的纳米机械行为、多步化学反应的途径以及原子水平结晶过程的阐明的见解。
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