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S'identifier
Center for Nanophase Materials Sciences
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Emerging Electron Microscopy Techniques for Probing Functional Interfaces in Energy Materials.
Angewandte Chemie (International ed. in English) Jan, 2020 | Pubmed ID: 31081976
Stabilizing polymer electrolytes in high-voltage lithium batteries.
Nature communications Jul, 2019 | Pubmed ID: 31300653
Chemical gradients in human enamel crystallites.
Nature 07, 2020 | Pubmed ID: 32612224
Publisher Correction: Chemical gradients in human enamel crystallites.
Nature Aug, 2020 | Pubmed ID: 32690940
Organo-organic and organo-mineral interfaces in soil at the nanometer scale.
Nature communications 11, 2020 | Pubmed ID: 33257711
Interferometric 4D-STEM for Lattice Distortion and Interlayer Spacing Measurements of Bilayer and Trilayer 2D Materials.
Small (Weinheim an der Bergstrasse, Germany) Jul, 2021 | Pubmed ID: 34080781
Charge order textures induced by non-linear couplings in a half-doped manganite.
Nature communications Jun, 2021 | Pubmed ID: 34145244
Machine Learning Method Reveals Hidden Strong Metal-Support Interaction in Microscopy Datasets.
Small methods May, 2021 | Pubmed ID: 34928097
Robust Atomic-Resolution Imaging of Lithium in Battery Materials by Center-of-Mass Scanning Transmission Electron Microscopy.
ACS nano Jan, 2022 | Pubmed ID: 35000379
Recreating Fuel Cell Catalyst Degradation in Aqueous Environments for Identical-Location Scanning Transmission Electron Microscopy Studies.
ACS applied materials & interfaces May, 2022 | Pubmed ID: 35230077
Atomically Dispersed Dual-Metal Site Catalysts for Enhanced CO Reduction: Mechanistic Insight into Active Site Structures.
Angewandte Chemie (International ed. in English) Jul, 2022 | Pubmed ID: 35470950
Measuring and directing charge transfer in heterogenous catalysts.
Nature communications Jun, 2022 | Pubmed ID: 35668115
Tracking Nanoparticle Degradation across Fuel Cell Electrodes by Automated Analytical Electron Microscopy.
ACS nano Aug, 2022 | Pubmed ID: 35867353
High Velocity, Low-Voltage Collective In-Plane Switching in (100) BaTiO Thin Films.
Advanced science (Weinheim, Baden-Wurttemberg, Germany) Oct, 2022 | Pubmed ID: 36031394
Oak Ridge National Laboratory
Michael J. Zachman1
1Center for Nanophase Materials Sciences, Oak Ridge National Laboratory
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