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Mapping Atomic Motions with Ultrabright Electrons: Fundamental Space-Time Limits to Imaging Chemistry and Biological Processes

Published online by Cambridge University Press:  30 July 2021

R. J. Dwayne Miller*
Affiliation:
Departments of Physics and Chemistry, University of Toronto, Toronto, ON, Canada, United States

Abstract

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Type
Exploring Beam-sample Interactions for Uncovering the Atomic or Dynamic Nature of Matter
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

Miller, R. J. D., Mapping Atomic Motions with Ultrabright Electrons: The Chemists’ Gedanken Experiment Enters the Lab Frame. Annual Review of Physical Chemistry. 65, 583604 (2014).CrossRefGoogle ScholarPubMed
Siwick, B. J., Dwyer, J. R., Jordan, R. E., Miller, R. J. D., An Atomic-Level View of Melting Using Femtosecond Electron Diffraction. Science. 302, 13821385 (2003).CrossRefGoogle ScholarPubMed
Ischenko, A. A., Weber, P. M., Miller, R. J. D., Capturing Chemistry in Action with Electrons: Realization of Atomically Resolved Reaction Dynamics. Chemical Reviews. 117, 1106611124 (2017).Google ScholarPubMed
Miller, R. J. D., Femtosecond Crystallography with Ultrabright Electrons and X-rays: Capturing Chemistry in Action. Science. 343, 11081116 (2014).Google ScholarPubMed
Jean-Ruel, H., Gao, M., Kochman, M. A., Lu, C., Liu, L. C., Cooney, R. R., Morrison, C. A., Miller, R. J. D., Ring-Closing Reaction in Diarylethene Captured by Femtosecond Electron Crystallography. The Journal of Physical Chemistry B. 117, 1589415902 (2013).Google ScholarPubMed
Gao, M., et al. , Mapping molecular motions leading to charge delocalization with ultrabright electrons. Nature. 496, 343346 (2013).CrossRefGoogle ScholarPubMed
Liu, L. C. et al. , Ultrafast electron diffraction study of single-crystal (EDO-TTF) 2 SbF 6: Counterion effect and dimensionality reduction. Chemical Physics Letters. 683, 160165 (2017).Google Scholar
Ishikawa, T. et al. , Direct observation of collective modes coupled to molecular orbital-driven charge transfer. Science. 350, 15011505 (2015).Google ScholarPubMed
Xian, R., Corthey, G., Rogers, D. M., Morrison, C. A., Prokhorenko, V. I., Hayes, S. A., Miller, R. J. D., Coherent ultrafast lattice-directed reaction dynamics of triiodide anion photodissociation. Nature Chemistry. 9, 516522 (2017).CrossRefGoogle ScholarPubMed
Li, Z., Gyawali, S., Ischenko, A. A., Hayes, S., Miller, R. J. D., Mapping Atomic Motions with Electrons: Toward the Quantum Limit to Imaging Chemistry. ACS Photonics. 7, 296320 (2020).CrossRefGoogle Scholar
Miller, R. J. D., Energetics and Dynamics of Deterministic Protein Motion. Accounts of Chemical Research. 27, 145150 (1994).Google Scholar