Mechanism-Based Development of a Low-Potential, Soluble, and Cyclable Multielectron Anolyte for Nonaqueous Redox Flow Batteries
作者:Christo S. Sevov、Sydney L. Fisher、Levi T. Thompson、Melanie S. Sanford
DOI:10.1021/jacs.6b07638
日期:2016.11.30
that occur during electrochemical cycling. Ultimately, these studies led to the identification of nickel BPI complexes that could undergo stable charge-discharge cycling (<5% capacity loss over 200 cycles) as well as a derivative that possesses the previously unprecedented combination of high solubility (>700 mM in CH3CN), multiple electron transfers at low redox potentials (-1.7 and -1.9 V versus Ag/Ag+)