McMaster University

$300,000.00 CAD

≈ 4 Canadians' average pay for a year
Department
National Research Council Canada
Program
Collaborative Science, Technology and Innovation Program - Collaborative R&D Initiatives
Recipient country
Canada
Fiscal year
2025-2026
Agreement period
September 1, 2025 – August 31, 2028
Reference
nrc-cnrc:172-2025-2026-Q2-1034708

Published purpose

Under an international consortium, the collaboration between the NRC and McMaster University focuses on optimizing Lithium-ion Batteries (LIBs) by leveraging expertise from both institutions. Core to the collaboration are NRC’s cathode self-driving laboratory (SDL) and McMaster's advanced Nuclear Magnetic Resonance (NMR) techniques. The Project aims to transform structure-property-performance relationships between a battery cathode and electrolyte using autonomous experimentation, Artificial Intelligence and Machine Learning (AI/ML) algorithms, and real-time Electrochemical Impedance Spectroscopy (EIS) to enhance the cathode-electrolyte interface, verified by solid-state 7Li NMR (ssNMR). McMaster University provides advanced magnetic resonance (MR) characterizations to analyze lithium-ion dynamics. The university will benchmark electrolytes, focusing on lithium diffusion coefficients and activation energies, and build a database of physical chemistry parameters. Operando characterization strategies using McMaster’s MR pencil-cell will study Li+ dynamics in half- and full-cell configurations, assessing lithium plating and battery aging. This collaboration promises significant advancements in the efficiency and longevity of next-generation LIBs.

Community tags

Tags are applied by readers, not by this site. One tag per person per record.

Good value Local impact Needs context Questionable Success story Wasteful
View official source record Imported July 30, 2026 from open.canada.ca Grants & Contributions