2023
DOI: 10.1021/acs.jpclett.3c00336
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Direct Atomic-Scale Insight into the Precipitation Formation at the Lanthanum Hydroxide Nanoparticle/Solution Interface

Abstract: Understanding precipitation formation at lanthanum hydroxide (La(OH)3) nanoparticle–solution interfaces plays a crucial role in catalysis, adsorption, and electrochemical energy storage applications. Liquid-phase transmission electron microscopy enables powerful visualization with high resolution. However, direct atomic-scale imaging of the interfacial metal (hydro)oxide nanostructure in solutions has been a major challenge due to their beam-driven dissolution. Combining focused ion beam and aberration-correct… Show more

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Cited by 2 publications
(1 citation statement)
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“…[ 39,40 ] For 3D printing of energy storage, it can also uncover charge storage mechanisms and promote the development of state‐of‐the‐art 3DP‐ESMDs. [ 41–43 ] To achieve efficient energy storage, the ionic resistance at interfaces (e.g., the electrode–electrolyte interface) should be minimized to ultralow levels, which is of critical significance for solid‐state EESDs. [ 44,45 ] The interface effect plays an imperative role in the development of innovative 3DP‐ESMDs in the future.…”
Section: Introductionmentioning
confidence: 99%
“…[ 39,40 ] For 3D printing of energy storage, it can also uncover charge storage mechanisms and promote the development of state‐of‐the‐art 3DP‐ESMDs. [ 41–43 ] To achieve efficient energy storage, the ionic resistance at interfaces (e.g., the electrode–electrolyte interface) should be minimized to ultralow levels, which is of critical significance for solid‐state EESDs. [ 44,45 ] The interface effect plays an imperative role in the development of innovative 3DP‐ESMDs in the future.…”
Section: Introductionmentioning
confidence: 99%