2024
DOI: 10.1021/jacs.3c14807
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Understanding Sorption of Aqueous Electrolytes in Porous Carbon by NMR Spectroscopy

Dongxun Lyu,
Katharina Märker,
Yuning Zhou
et al.

Abstract: Ion adsorption at solid−water interfaces is crucial for many electrochemical processes involving aqueous electrolytes including energy storage, electrochemical separations, and electrocatalysis. However, the impact of the hydronium (H 3 O + ) and hydroxide (OH − ) ions on the ion adsorption and surface charge distributions remains poorly understood. Many fundamental studies of supercapacitors focus on non-aqueous electrolytes to avoid addressing the role of functional groups and electrolyte pH in altering ion … Show more

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Cited by 5 publications
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“…License: CC BY 4.0 the overall charge of the carbon (as often quantified via a point of zero charge (PZC)). 30,31 Particularly in aqueous electrolytes, where many of these functional groups (e.g., phenols, chromenes) can be protonated or deprotonated depending on pH, the role of these functional groups may also need to be considered. However, we note that both NMR and Raman provide well established methods for identifying and quantifying these species.…”
Section: Figurementioning
confidence: 99%
“…License: CC BY 4.0 the overall charge of the carbon (as often quantified via a point of zero charge (PZC)). 30,31 Particularly in aqueous electrolytes, where many of these functional groups (e.g., phenols, chromenes) can be protonated or deprotonated depending on pH, the role of these functional groups may also need to be considered. However, we note that both NMR and Raman provide well established methods for identifying and quantifying these species.…”
Section: Figurementioning
confidence: 99%