Related Experiment Video
Updated: Jan 16, 2026

In Situ Lithiated Reference Electrode: Four Electrode Design for In-operando Impedance Spectroscopy
Published on: September 12, 2018
Elucidating Surface Adsorption of Lithium Ions on Electrode Materials Using 7Li Dark-State Exchange Saturation
Shakked Schwartz1, Ayan Maity1, Vaishali Arunachalam1
1Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science, Rehovot 7610000, Israel.
Abstract:
Interfacial chemistry plays a central role in the development of next-generation high-energy Li-ion electrode materials. Yet, the rational design of new surface treatments that serve as beneficial solid electrolyte interphases is hindered by the challenges involved in probing their interfacial ion transfer properties. Here, we demonstrate how 7Li Dark-State Exchange Saturation Transfer (DEST) NMR can be used to directly measure the Li-ion surface adsorption process at the solid-liquid interface. The development of an optimized model system composed of monodisperse submicron particles allowed for comparison between different surface functionalities, enabling the characterization of state-of-the-art electrode coating layers in terms of their Li-ion affinity. Numerical simulations based on Bloch-McConnell equations enable a quantitative analysis of the surface exchange rates and binding properties, cementing DEST as a valuable tool for elucidating the structure-function relationship in electrode materials.

