Ruozhu Feng
Ruozhu Feng
2024_RuozhuFeng_WeiWang_J.Electrochem.Soc._ad9bef ← click to see all uploads from this cell
2026-08-13 00:14:02
3a0dd5a7-d7ba-4ef9-a33c-583b6d884430
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

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Linked Uploads

Type Group Date Project Link
EIS Ruozhu Feng 2026-08-13 00:13 Miniaturize the Redox Flow Battery same cell

Materials Studied 5 materials

Material Family Role(s) Ion
7,8-dihydroxyphenazine-2-sulfonic acid (DHPS)  · DHPS negolyte
0.1 M capacity-limiting negolyte, alkaline RFB chemistry
Redox-active organic
Other
Redox-active species
Potassium ferrocyanide / ferricyanide  · Ferri/ferrocyanide posolyte
Non-capacity-limiting posolyte, alkaline and pH-neutral tests
Inorganic coordination redox couple
Other · as named
Redox-active species
Sulfonate-viologen (SV)  · SV negolyte
0.1 M capacity-limiting side under pH-neutral conditions
Redox-active organic
Other
Redox-active species
Methylene blue (MB)  · MB catholyte
Model organic catholyte for acidic conditions
Redox-active organic
Other
Redox-active species
Graphite plate / graphite felt electrode  · Graphite flow-cell electrode
Mini flow-cell hardware benchmarked in this work
Conductive carbon
Other
Current collector

Declared for sample 2024_RuozhuFeng_WeiWang_J.Electrochem.Soc._ad9bef — shared by every dataset on this sample.

Experiment Metadata

Visibility public
Publication Doi 10.1149/1945-7111/ad9bef
Concentration Mm 1.0
Institution Code ESRA
Potential Window 0.2 – 1.3 V (pH neutral, SV); 0.2 – 1.5 V (acidic, MB); 0.6 – 1.8 V (alkaline, DHPS)
Measurement Technique Galvanostatic charge-discharge cycling; rate capability testing