
BTR BN-O3 Sodium-Ion NFM Cathode Material 1kg
SKU: BN-O3
$415.00
BTR BN-O3 Sodium-Ion NFM Cathode Material (Grades BN-O3A and BN-O3B) — sodium nickel iron manganese oxide cathode for sodium-ion batteries, with Na/Ni/Fe/Mn ≈ 20.7/17.6/16.7/16.5 wt%, D50 ~11 μm, tap density 1.95-2.1 g/cm³, 2-ton compaction density 2.65-2.7 g/cm³.
Half-cell testing at 0.1C, 2.0–4.0 V (1M NaPF₆) delivers 137.5-139 mAh/g with 93% first-cycle efficiency and 94.5-96.5% capacity retention after 50 cycles at 1C.
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Name: BTR BN-O3 Sodium-Ion NFM Cathode Material
Material Type: Sodium Nickel Iron Manganese Oxide (NFM) Cathode Material for Sodium-Ion Batteries
Product Code: BN-O3A / BN-O3B (two grades)
Brand: BTR
Product Introduction:
The BTR BN-O3 series is a sodium nickel iron manganese oxide (NFM) cathode material designed for sodium-ion (Na-ion) batteries, supplied in two grades — BN-O3A and BN-O3B — that share the same Na/Ni/Fe/Mn chemical composition but differ in particle size, tap density, and electrochemical performance. The material delivers 137.5–139 mAh/g first-cycle discharge capacity at 0.1C and 132–135 mAh/g at 1C in 2.0–4.0 V half cells with 1M NaPF₆ electrolyte, with 93% first-cycle efficiency and 94.5–96.5% capacity retention after 50 cycles at 1C.
Key Features:
Sodium-ion battery cathode chemistry — Na / Ni / Fe / Mn 20.7 / 17.6 / 16.7 / 16.5 wt%
0.1C reversible capacity 137.5 mAh/g (BN-O3A) and 139 mAh/g (BN-O3B)
1C reversible capacity 132.0 mAh/g (BN-O3A) and 135 mAh/g (BN-O3B)
First-cycle efficiency 93%
50-cycle capacity retention at 1C — 96.5% (BN-O3A) and 94.5% (BN-O3B)
Tap density 1.95–2.1 g/cm³ and 2-ton compaction density 2.65–2.7 g/cm³
Low specific surface area 0.5 m²/g
Low surface alkali — NaOH ≤ 0.12 wt%, Na₂CO₃ ≤ 0.45 wt%
Tested in half cells with 1M NaPF₆ in ester solvent, 2.0–4.0 V voltage window
Two grades available — BN-O3A (D50 11.0 μm) and BN-O3B (D50 11.2 μm)
Chemical Composition:
| Element | Specification | BN-O3A Test Value | BN-O3B Test Value |
|---|---|---|---|
| Na (wt%) | 20.6 ± 0.3 | 20.7 | 20.7 |
| Ni (wt%) | 17.6 ± 0.3 | 17.6 | 17.6 |
| Fe (wt%) | 16.7 ± 0.3 | 16.7 | 16.7 |
| Mn (wt%) | 16.5 ± 0.3 | 16.5 | 16.5 |
Particle Size Distribution (PSD):
| Parameter | BN-O3A | BN-O3B |
|---|---|---|
| D10 (μm) | 7.5 (Spec 7.0 ± 0.5) | 7.1 (Spec 7.0 ± 0.5) |
| D50 (μm) | 11.0 (Spec 11.5 ± 0.5) | 11.2 (Spec 11.0 ± 0.5) |
| D90 (μm) | 16.0 (Spec 16.5 ± 0.5) | 16.2 (Spec 16.0 ± 0.5) |
Physical Properties:
| Property | BN-O3A | BN-O3B |
|---|---|---|
| Tap Density (g/cm³) | 1.95 (≥ 1.9) | 2.1 (≥ 2.0) |
| Specific Surface Area SSA (m²/g) | 0.5 (≤ 2.0) | 0.5 (≤ 2.0) |
| 2-Ton Powder Compaction Density (g/cm³) | 2.65 (≥ 2.6) | 2.7 (≥ 2.6) |
Surface Alkali:
| Item | Spec | BN-O3A | BN-O3B |
|---|---|---|---|
| NaOH (wt%) | ≤ 0.8 | 0.12 | 0.05 |
| Na₂CO₃ (wt%) | ≤ 1.0 | 0.45 | 0.4 |
Electrochemical Performance (Half-Cell, 1M NaPF₆ in Ester Solvent, 2.0–4.0 V):
| Parameter | Spec | BN-O3A | BN-O3B |
|---|---|---|---|
| 0.1C Reversible Capacity (mAh/g) | 138 ± 2 / 140 ± 2 | 137.5 | 139 |
| 1C Reversible Capacity (mAh/g) | 133 ± 2 / 135 ± 2 | 132.0 | 135 |
| First-Cycle Efficiency (%) | ≥ 90 | 93 | 93 |
| 50-Cycle Capacity Retention at 1C (%) | ≥ 85 | 96.5 | 94.5 |
Values measured by Xnergy. Typical values for reference; not guaranteed unless otherwise specified.
Shelf Life:
180 days under low humidity (less than 10% RH).
Handling & Storage:
This product is air-sensitive. Do not expose it to ambient environment for extended periods — seal the material promptly after each use, and baking before use is recommended to remove absorbed moisture. Store under low humidity (< 10% RH) to maintain the rated 180-day shelf life.
Note: Specifications listed above are typical and for reference only. Actual electrochemical performance depends on the specific cell architecture, electrolyte formulation, binder/conductive-additive composition, coating thickness, calendering parameters, formation protocol, and testing conditions. The BN-O3 series is a sodium-ion battery cathode material — formulation, electrolyte selection, and cell design considerations differ from lithium-ion NCM/LFP/LMFP cathodes; consult published sodium-ion literature and our technical team for guidance on specific Na-ion electrode protocols. For complete battery electrode preparation workflows, see also Xnergy’s related products in the Cathode Materials category, Anode Materials category, Binders category, and Current Collectors category. For electrode-coating equipment, see the Coating equipment category including Automatic Film Coater XN-VC-300, XN-VCH-300, and Slot-Die Coating System XN-SDC. For electrode calendering, see the Calendering equipment category. For mixing and drying, see Planetary Vacuum Mixer and Three-Door Vacuum Drying Oven (XN-DVO-3). For other BTR cathode products in our catalog, see also BTR M2-S Single-Crystal Ni83 NCM Cathode, BTR M1-S2 Cathode Material, and BTR M9-FC Polycrystalline NCM Cathode.



