Automation-Accelerated Electrolyte Design Mitigates Solubility Competition between Redox-Active Molecules and Supporting Salts
same cell
EIS
Yangang Liang
2026-08-14 18:21
Automation-Accelerated Electrolyte Design Mitigates Solubility Competition between Redox-Active Molecules and Supporting Salts
same cell
DFT
Yangang Liang
2026-08-14 18:21
Automation-Accelerated Electrolyte Design Mitigates Solubility Competition between Redox-Active Molecules and Supporting Salts
same cell
Experiment Metadata
Nucleus
¹H (BTZ quantification by qNMR; MX/ACN solvent by PFG-NMR); ¹⁹F (LiTFSI/TFSI⁻ by qNMR and PFG-NMR); ⁷Li (Li⁺ diffusion by PFG-NMR)
Visibility
public
Temperature C
6.0
Nmr Experiment
qNMR: standard 1D (64 scans, 10 s relaxation delay); PFG-NMR: 13-interval stimulated echo with bipolar gradient pulses; 16 data points vs gradient strength (up to 16 steps); δ = 2 ms, Δ = 50 ms
Publication Doi
10.1021/acsaem.5c02546
Institution Code
ESRA
Field Strength Mhz
400.0
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