Sodium Nickel Iron Manganese Oxide 59mg Sheet ATOMFAIR®

$129.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade NFM111-S03 sodium nickel iron manganese oxide electrode sheet, 59 mg/cm2 dry-coated on 12+0.5+0.5 μm Al foil, 5 sheets/pack, ISO 9001.

SKU: AF-BM-S-C111-AD59-5P00
Category:
Brands:

ATOMFAIR® NFM111-S03 SODIUM NICKEL IRON MANGANESE OXIDE ELECTRODE SHEET

RESEARCH GRADE MATERIAL

Product Overview

Atomfair NFM111-S03 is a high-performance Sodium Nickel Iron Manganese Oxide electrode sheet, single-side coated via an advanced Dry Process at 59 mg/cm². Specifically designed for sodium-ion battery R&D, it ensures cell-to-cell consistency, baseline testing control, variable elimination, and electrolyte validation platform benefits while nesting target sodium nickel iron manganese oxide electrode sheet price structures to optimize laboratory validation integrity.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Product Code S03
Nominal Capacity 125 mAh/g
Coating Process Dry Process
2. Cathode Parameters
Coating Material NFM111 (Sodium Nickel Iron Manganese Oxide)
Active Material Ratio 95.30%
Coating Density 59 mg/cm2
Coating Area 90 × 120 mm
Coating Type Single-sided
Compaction Density 2.85 g/cm3
3. Substrate & Foil Parameters
Substrate Material Carbon-coated Aluminum Foil matrix crystals
Current Collector Density 4.2 mg/cm2
Substrate Thickness 12 + 0.5 + 0.5 μm
Substrate Size 90 × 140 mm
4. Compliance & Support
Pack Size 5 sheets/pack
Manufacturing Rules Processed under strict ISO 9001 compliance conditions
Alternative Options Explore our related catalog or custom dimensions. For urgent technical custom requests or bulk inquiries, please contact our support team.

Key Features & Advantages

  • Homogeneous Material Purity: Formulated with a 95.30% optimized active phase ratio to deliver strong electrochemical kinetics across half-cell foils testing matrices.
  • Enhanced Operational Efficiency: Built on advanced carbon-coated aluminum foil current collectors to optimize structural interface metrics, secure electrical attachment, and improve long-term cycle kinetics.
  • Advanced Dry process execution: Advanced dry coating implementation establishes a uniform high-density loading profile of 59 mg/cm² over the 90 × 120 mm area, avoiding local solvent variations during cell prototyping.
  • Tailored Solutions: Full custom engineering parameters architecture comprehensively supports targeted modifications for specialized coating thickness, localized width, and current collector geometries.

APPLICATION SCOPE: Sodium-ion battery Research & Development, material benchmarking, systematic laboratory testing, and precise cell prototyping evaluation.
PACKAGING: 5 electrode sheets per pack (Substrate size: 90 × 140 mm), packaged meticulously to safeguard consistent quality parameters during baseline diagnostics.
IMPORTANT NOTICE: This product is sold exclusively for laboratory research. Not for commercial production or medical use. Recommended baking protocol: Process and maintain strictly for 12 hours under vacuum at 100°C to prevent moisture contamination or phase degradation before thermal validation testing workflows.

TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: ATOMFAIR LLC
Brand: ATOMFAIR®

This electrode sheet requires vacuum baking at 100°C for 12 hours to eliminate moisture and prevent phase degradation before use. Moisture contamination during handling or storage can compromise electrochemical performance and cell consistency.

  • Baking Protocol: Electrode sheets must be baked under vacuum at 100°C for 12 hours to remove moisture and prevent phase degradation prior to thermal validation testing.
  • Moisture Sensitivity: The electrode material is sensitive to moisture contamination, which can cause phase degradation and affect electrochemical performance.

How does the dry process coating at 59 mg/cm² loading density affect the electrochemical performance of the NFM111-S03 electrode sheet compared to wet-coated alternatives?

The dry process achieves a uniform high-density loading of 59 mg/cm² over the 90×120 mm area, eliminating local solvent variations that can occur in wet-coated electrodes. This ensures consistent capacity and kinetics, targeting the nominal 125 mAh/g, and reduces variability in cell prototyping.

What substrate and current collector design does the NFM111-S03 electrode sheet use, and how does it influence integration into sodium-ion half-cell or full-cell testing?

The electrode uses a carbon-coated aluminum foil current collector with a density of 4.2 mg/cm² and a substrate thickness of 12 + 0.5 + 0.5 μm. The carbon coating optimizes structural interface metrics and electrical attachment, making it suitable for baseline testing and electrolyte validation platforms without requiring additional modifications.

What is the recommended pre-treatment protocol for the NFM111-S03 electrode sheet to ensure reliable cell assembly and avoid moisture-induced degradation?

The sheet requires a strict baking protocol under vacuum at 100°C for 12 hours before use to prevent moisture contamination and phase degradation. This step is critical for maintaining the integrity of the sodium nickel iron manganese oxide active material and ensuring consistent results in thermal validation testing.

The NFM111-S03 electrode sheet delivers a high active material ratio of 95.30% and uniform dry-process coating at 59 mg/cm², enabling consistent sodium-ion cell prototyping; however, it mandates a 12-hour vacuum bake at 100°C to prevent moisture-induced degradation and is restricted to laboratory research use.

Positive

  • High active material ratio: The 95.30% optimized active phase ratio delivers strong electrochemical kinetics across half-cell testing matrices.
  • Uniform dry-process coating: Advanced dry coating establishes a uniform high-density loading profile of 59 mg/cm² over the 90×120 mm area, avoiding local solvent variations during cell prototyping.

Trade-offs

  • Required vacuum baking protocol: The electrode sheets must be baked under vacuum at 100°C for 12 hours to prevent moisture contamination or phase degradation before thermal validation testing.
  • Research use only: Sold exclusively for laboratory research; not intended for commercial production or medical use, limiting deployment to R&D environments.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).