# Cinematographic study of&nbsp;stochastic chemical events at atomic resolution

https://mdr.nims.go.jp/datasets/7cb6f55f-02a3-4851-9461-a4c70e8d3d5a

## File

- [Microscopy_fin.pdf](https://mdr.nims.go.jp/filesets/f720c199-bb6c-4a15-98b7-d355b6d69e80/download) ([Detail](https://mdr.nims.go.jp/filesets/f720c199-bb6c-4a15-98b7-d355b6d69e80.md))

## Id

7cb6f55f-02a3-4851-9461-a4c70e8d3d5a

## Local identifier



## Visibility

open_to_public

## State

published

## Created at

2024-08-09T07:29:33.150249Z

## Updated at

2024-10-21T03:30:22.777510Z

## Published at

2024-10-21T03:30:24.066461Z

## Doi

https://doi.org/10.48505/nims.4659

## First published url

https://doi.org/10.1093/jmicro/dfad052

## Date published

2024-04-08

## Recorded date published

2024-4-8

## Resource type

journal_article

## Manuscript type

accepted_manuscript

## Collection



## Title

- title: Cinematographic study of stochastic chemical events at atomic resolution
  title_type: original
  lang: en

## Description

- description: 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.
  description_type: abstract
  lang: und

## Creator

- name: Koji Harano
  role: author
  orcid: https://orcid.org/0000-0001-6800-8023
  organization: National Institute for Materials Science
- name: Takayuki Nakamuro
  role: author
- name: Eiichi Nakamura
  role: author

## Contact agent



## Publisher

organization: Oxford University Press (OUP)

## Managing organization



## Keyword

- subject: SMART-EM
  schema: not_defined
- subject: in-situ imaging
  schema: not_defined
- subject: transmission electron microscopy
  schema: not_defined
- subject: time-resolved imaging
  schema: not_defined

## Rights

- description: 'This is a pre-copyedited, author-produced version of an article accepted
    for publication in Microscopy following peer review. The version of record Koji
    Harano, Takayuki Nakamuro, Eiichi Nakamura, Cinematographic study of stochastic
    chemical events at atomic resolution, Microscopy, Volume 73, Issue 2, April 2024,
    Pages 101–116, is available online at: https://doi.org/10.1093/jmicro/dfad052'
  identifier: http://rightsstatements.org/vocab/InC/1.0/

## Other identifier(s)



## Data origin

- data_origin_type: other

## Embargo

start_date: 2023-10-21
end_date: 2024-10-21

## Journal

- title: Microscopy
  issn: '00220744'
  volume: '73'
  issue: '2'
  start_page: 101
  end_page: 116

## Conference



## Related item



## Funding

- identifier: JPMJSN16B1
  funder_name: Japan Science and Technology Agency
- identifier: JP19H05459 JP21H01758 JP22K14704 JP23H04874
  funder_name: Japan Society for the Promotion of Science
- identifier: JPMJCR20B2
  funder_name: Core Research for Evolutional Science and Technology
- identifier: JPMJSN16B1
  funder_name: Japan Science and Technology Agency
- identifier: JP19H05459 JP21H01758 JP22K14704 JP23H04874
  funder_name: Japan Society for the Promotion of Science
- identifier: JPMJCR20B2
  funder_name: Core Research for Evolutional Science and Technology

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## Fileset

- id: f720c199-bb6c-4a15-98b7-d355b6d69e80
  filename: Microscopy_fin.pdf
  content_type: application/pdf
  size: 7370693
  md5: 124f52cd6645829b32c99cfa01fff652

## Thumbnail

fileset_id: f720c199-bb6c-4a15-98b7-d355b6d69e80
filename: Microscopy_fin.pdf