Michael J. Zachman
Michael J. Zachman
Staff Scientist, Center for Nanophase Materials Sciences, Oak Ridge National Laboratory
Verified email at - Homepage
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Cryo-STEM mapping of solid–liquid interfaces and dendrites in lithium-metal batteries
MJ Zachman, Z Tu, S Choudhury, LA Archer, LF Kourkoutis
Nature 560 (7718), 345-349, 2018
Fast ion transport at solid–solid interfaces in hybrid battery anodes
Z Tu, S Choudhury, MJ Zachman, S Wei, K Zhang, LF Kourkoutis, ...
Nature Energy 3 (4), 310-316, 2018
Designing solid-liquid interphases for sodium batteries
S Choudhury, S Choudhury
Rational Design of Nanostructured Polymer Electrolytes and Solid–Liquid …, 2019
Atomically dispersed iron sites with a nitrogen–carbon coating as highly active and durable oxygen reduction catalysts for fuel cells
S Liu, C Li, MJ Zachman, Y Zeng, H Yu, B Li, M Wang, J Braaten, J Liu, ...
Nature Energy 7 (7), 652-663, 2022
Designing artificial solid-electrolyte interphases for single-ion and high-efficiency transport in batteries
Z Tu, S Choudhury, MJ Zachman, S Wei, K Zhang, LF Kourkoutis, ...
Joule 1 (2), 394-406, 2017
Solid electrolyte interphases for high-energy aqueous aluminum electrochemical cells
Q Zhao, MJ Zachman, WI Al Sadat, J Zheng, LF Kourkoutis, L Archer
Science advances 4 (11), eaau8131, 2018
Chemical gradients in human enamel crystallites
KA DeRocher, PJM Smeets, BH Goodge, MJ Zachman, PV Balachandran, ...
Nature 583 (7814), 66-71, 2020
Atomically Dispersed Dual‐Metal Site Catalysts for Enhanced CO2 Reduction: Mechanistic Insight into Active Site Structures
Y Li, W Shan, MJ Zachman, M Wang, S Hwang, H Tabassum, J Yang, ...
Angewandte Chemie 134 (28), e202205632, 2022
Nanoporous hybrid electrolytes for high‐energy batteries based on reactive metal anodes
Z Tu, MJ Zachman, S Choudhury, S Wei, L Ma, Y Yang, LF Kourkoutis, ...
Advanced Energy Materials 7 (8), 1602367, 2017
Stabilizing polymer electrolytes in high-voltage lithium batteries
S Choudhury, S Choudhury
Rational Design of Nanostructured Polymer Electrolytes and Solid–Liquid …, 2019
Atomically dispersed single Ni site catalysts for high-efficiency CO 2 electroreduction at industrial-level current densities
Y Li, NM Adli, W Shan, M Wang, MJ Zachman, S Hwang, H Tabassum, ...
Energy & Environmental Science 15 (5), 2108-2119, 2022
Organo–organic and organo–mineral interfaces in soil at the nanometer scale
AR Possinger, MJ Zachman, A Enders, BDA Levin, DA Muller, ...
Nature communications 11 (1), 6103, 2020
Designer interphases for the lithium-oxygen electrochemical cell
S Choudhury, CTC Wan, WI Al Sadat, Z Tu, S Lau, MJ Zachman, ...
Science advances 3 (4), e1602809, 2017
Quantifying the electrochemical active site density of precious metal-free catalysts in situ in fuel cells
RZ Snitkoff-Sol, A Friedman, HC Honig, Y Yurko, A Kozhushner, ...
Nature Catalysis 5 (2), 163-170, 2022
Stabilizing protic and aprotic liquid electrolytes at high-bandgap oxide interphases
Z Tu, MJ Zachman, S Choudhury, KA Khan, Q Zhao, LF Kourkoutis, ...
Chemistry of Materials 30 (16), 5655-5662, 2018
Characterization of sulfur and nanostructured sulfur battery cathodes in electron microscopy without sublimation artifacts
BDA Levin, MJ Zachman, JG Werner, R Sahore, KX Nguyen, Y Han, B Xie, ...
Microscopy and Microanalysis 23 (1), 155-162, 2017
Site-Specific Preparation of Intact Solid–Liquid Interfaces by Label-Free In Situ Localization and Cryo-Focused Ion Beam Lift-Out
MJ Zachman, E Asenath-Smith, LA Estroff, LF Kourkoutis
Microscopy and Microanalysis 22 (6), 1338-1349, 2016
Tuning the thermal activation atmosphere breaks the activity–stability trade-off of Fe–N–C oxygen reduction fuel cell catalysts
Y Zeng, C Li, B Li, J Liang, MJ Zachman, DA Cullen, RP Hermann, EE Alp, ...
Nature Catalysis 6 (12), 1215-1227, 2023
Atomic‐Scale Visualization of Electrochemical Lithiation Processes in Monolayer MoS2 by Cryogenic Electron Microscopy
SH Yu, MJ Zachman, K Kang, H Gao, X Huang, FJ DiSalvo, J Park, ...
Advanced Energy Materials 9 (47), 1902773, 2019
Nanoscale elemental mapping of intact solid–liquid interfaces and reactive materials in energy devices enabled by cryo-FIB/SEM
MJ Zachman, Z Tu, LA Archer, LF Kourkoutis
ACS Energy Letters 5 (4), 1224-1232, 2020
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