DOE OSTI · 3452322
Insights into Native Single-Atom Electrocatalyst Site Structures
Abstract
Single-atom electrocatalysts consisting of metal atoms embedded in a carbon matrix are promising next-generation catalysts for green hydrogen production and utilization, CO2 reduction, low-temperature CO oxidation, ammonia production, plastic decomposition, and electrochemical energy storage. The origins of activity and stability for the single-atom sites are still debatable, however, because of constrained insights into their local structure resulting from idealized models and experiments derived from a large number of individual sites. Insights into structural variations around single atomic sites are therefore critical for the continued development of these next-generation catalysts. While electron microscopy commonly provides atomic-scale information about these materials, the beam sensitivity of individual sites makes structural determination by conventional low-voltage (60 keV) techniques challenging. Here, we introduce ultralow-voltage electron ptychography, performed at 30 keV, that enables determination of the lattice structure around individual metal sites in a well-defined single-atom electrocatalyst system while essentially eliminating knock-on structural modifications. Pairing these atomic-scale, site-specific measurements with computational methods will broaden our understanding of the activity and stability of these materials, which will accelerate the development of the next generation of catalysts.
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Zachman, Michael [ORNL] (ORCID:0000000319101357), Hafiz, Hasnain [Los Alamos National Laboratory (LANL)], O'Leary, Colum M [Oxford University], Lim, Chaewon [University of California, Irvine], Chung, Dong Young [Argonne National Laboratory], Li, Sirui [Ohio State University], Park, Subin [Seoul National University], Kim, Jiheon [Seoul National University], Cullen, David [ORNL] (ORCID:0000000225937866), Holby, Edward F [Los Alamos National Laboratory (LANL)], Stamenkovic, Vojislav [Argonne National Laboratory (ANL)]. 2026-06-01. Insights into Native Single-Atom Electrocatalyst Site Structures. https://doi.org/10.1021/acsnano.6c03527
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