Analysis of the three-dimensional (3D) structures of nanocrystals with solution-phase transmission electron microscopy is beginning to reveal their unique physiochemical properties. We developed a "one-particle Brownian 3D reconstruction method" based on imaging of ensembles of colloidal nanocrystals using graphene liquid cell electron microscopy. Projection images of differently rotated nanocrystals are acquired using a direct electron detector with high temporal (<2.5 ms) resolution and analyzed to obtain an ensemble of 3D reconstructions. Here, we introduce computational methods required for successful atomic-resolution 3D reconstruction: (i) tracking of the individual particles throughout the time series, (ii) subtraction of the interfering background of the graphene liquid cell, (iii) identification and rejection of low-quality images, and (iv) tailored strategies for 2D/3D alignment and averaging that differ from those used in biological cryo-electron microscopy. Our developments are made available through the open-source software package SINGLE.
SINGLE: Atomic-resolution structure identification of nanocrystals by graphene liquid cell EM.
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作者:Reboul Cyril F, Heo Junyoung, Machello Chiara, Kiesewetter Simon, Kim Byung Hyo, Kim Sungin, Elmlund Dominika, Ercius Peter, Park Jungwon, Elmlund Hans
| 期刊: | Science Advances | 影响因子: | 12.500 |
| 时间: | 2021 | 起止号: | 2021 Jan 29; 7(5):eabe6679 |
| doi: | 10.1126/sciadv.abe6679 | ||
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