| Type | Group | Date | Project | Link | |
| NMR | Betar Gallant | 2026-08-12 21:52 | Deciphering Unresolved Materials in Quantitative Analysis of Lithium Metal Solid Electrolyte Interphases | same cell | |
| ICP | Betar Gallant | 2026-08-12 21:52 | Deciphering Unresolved Materials in Quantitative Analysis of Lithium Metal Solid Electrolyte Interphases | same cell | |
| GC | Betar Gallant | 2026-08-12 21:51 | Deciphering Unresolved Materials in Quantitative Analysis of Lithium Metal Solid Electrolyte Interphases | same cell | |
| Cycling | Betar Gallant | 2026-08-12 21:51 | Deciphering Unresolved Materials in Quantitative Analysis of Lithium Metal Solid Electrolyte Interphases | same cell |
| Material | Family | Role(s) | Ion |
| 1 M LiPF6 in EC/DEC (LP40) · LP40 carbonate electrolyte |
Carbonate
Liquid
|
Electrolyte | Li |
| 1 M LiFSI in DME · Ether electrolyte |
Ether / glyme
Liquid
|
Electrolyte | Li |
| 0.6 M LiDFOB + 0.2 M LiBF4 in FEC/DEC (1:2) · Fluorinated borate electrolyte |
Carbonate
Liquid
|
Electrolyte | Li |
| LiFSI in DME/TTE · Localized high-concentration electrolyte |
Localized high-concentration
Liquid
|
Electrolyte | Li |
|
Li metal
· Lithium metal
SEI quantified by GC, ICP and NMR titration
|
Alkali metal
Anode
|
Anode | Li |
| Cu foil · Copper working electrode |
Current-collector metal
Other
|
Working electrode, Current collector | — |
Declared for sample 2025_KatherineSteinberg_BetarGallant_ACS.Energy.Lett._5c01274 — shared by every dataset on this sample.
| Visibility | public |
| Detector Mode | analytic, in lens detector |
| Publication Doi | 10.1021/acsenergylett.5c01274 |
| Sample Transfer | air-free transfer |
| Institution Code | ESRA |
| Instrument Model | Zeiss Merlin High-Resolution SEM |
| Sample Preparation | Washed Cu WE after equivalent of half galvanostatic cycle; 1 mAh/cm² deposited at 0.5 mA/cm²; washed before imaging |
| Conditions Compared | LP40; LiFSI DME; LiDFOB + LiBF₄ FEC/DEC; LiFSI DME/TTE LHCE |
| Accelerating Voltage Kv | 2.0 |
| Magnification / Scale Bar | Low mag: 10 µm scale bar; high mag: 1 µm scale bar |