Dong-Min Kim
Yan Yao; Mary C. Scott; Ying Chen; Brett A. Helms
2026_DongMinKim_BrettHelms_ACS.Energy.Lett._6c00026 ← click to see all uploads from this cell
2026-08-12 22:27:51
1160cda0-db8f-476a-bd8b-176c4eb785f6
How to Cite
1 — Cite the dataset paper
↗ View paper
2 — Cite the ESRA platform
Galib, M. et al. (2026). ESRA: Energy Storage Research Assistant. Argonne National Laboratory. https://github.com/MusannaGalib/esra-platform
CC BY 4.0  ·  Data shared under Creative Commons Attribution 4.0

Location on Eagle / Perlmutter

/global/cfs/cdirs/m4845/gsharing/yan-yao-mary-c-scott-ying-chen-brett-a-h/thermoformable-electrolytes-for-solid-st/2026-dongminkim-bretthelms-acsenergylett/Cycling/cycling/ESRA-CYC-0002/
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Linked Uploads

Type Group Date Project Link
XRD Yan Yao; Mary C. Scott; Ying Chen; Brett A. Helms 2026-08-12 22:28 Thermoformable Electrolytes for Solid-State Sodium Metal Batteries Employing Organic Cathodes same cell
Raman Yan Yao; Mary C. Scott; Ying Chen; Brett A. Helms 2026-08-12 22:27 Thermoformable Electrolytes for Solid-State Sodium Metal Batteries Employing Organic Cathodes same cell
NMR Yan Yao; Mary C. Scott; Ying Chen; Brett A. Helms 2026-08-12 22:27 Thermoformable Electrolytes for Solid-State Sodium Metal Batteries Employing Organic Cathodes same cell
EIS Yan Yao; Mary C. Scott; Ying Chen; Brett A. Helms 2026-08-12 22:27 Thermoformable Electrolytes for Solid-State Sodium Metal Batteries Employing Organic Cathodes same cell

Experiment Metadata

Visibility public
Electrolyte Na ORION: SBU:NaTFSI:G2 = 1:1:2.0 (2.0 G2 ORION); effective NaTFSI concentration 2.75 M; viscoelastic solid at RT, liquid above 110°C
Temperature C 60.0
Anode Material Na metal (Sigma Aldrich; trimmed, rolled, punched to 10 mm disks)
Publication Doi 10.1021/acsenergylett.6c00026
Number Of Cycles >200 (full cell, NalORIONlcathode); >400 (Na symmetric cell)
Cathode Material PTCDA (perylene-3,4,9,10-tetracarboxylic dianhydride); composite 7:2:1 PTCDA:Super P (conducting carbon):PVdF
Institution Code ESRA
Electrode Area Cm2 0.317
Voltage Window — Lower 1.4
Voltage Window — Upper 3.0
Theoretical Capacity Mah 140.0
Current / C-Rate / Protocol Summary Full cell: 3 formation cycles at 0.03C, then 0.1C (1C = 140 mAh g⁻¹); symmetric cell: 0.15 mA cm⁻² galvanostatic