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◆ The Journal of Physical Chemistry C2026-03-24· Electrolyte

<sup>23</sup> Na NMR Chemical Shift as a Descriptor of Sodium Electrode Potential

Hiroshi Takida, Yasuyuki Kondo, Yu Katayama, Kazuhisa Hirata, Tsuyoshi Yamashita, Yuki Yamada

原始摘要(英文原文)· Original abstract
High Resolution Image Download MS PowerPoint Slide The electrode potential of alkali metals is a critical parameter for battery performance, but its dependence on electrolyte compositions remains poorly understood, particularly for sodium metal, because of its high reactivity with electrolytes. Here, we systematically evaluated the sodium electrode potentials ( E Na ) in various electrolytes composed of sodium bis(fluorosulfonyl)imide, which enables stable measurements by forming a robust solid electrolyte interphase. The coordination state around Na + in each electrolyte was analyzed by using Raman spectroscopy and 23 Na NMR. In a low-concentration regime, E Na strongly correlates with 23 Na chemical shifts that reflect the electron-donating ability of solvents, indicating that the solvating ability is the primary determinant of E Na . At a higher concentration, ab initio molecular dynamics simulations revealed that the 23 Na chemical shifts reflected the ion-pairing state, as well as solvation. Leveraging these insights, we developed a simple yet powerful predictive model for the E Na . By using only 23 Na chemical shifts and salt-to-solvent molar ratios, the model can accurately predict E Na across diverse electrolytes. This work identifies a new descriptor of E Na and provides a platform for rational electrolyte design for advanced sodium batteries.
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<sup>23</sup> Na NMR Chemical Shift as a Descriptor of Sodium Electrode Potential — 科研速览 Science Skim