NVP Carbon Coated Aluminum 1Ah 14-Layer Dry Pouch Cell

$199.95

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.

Buy carbon coated aluminum foil price deals for 14-layer solid state electrolyte pouch cell R&D. ISO 9001 compliance standards. Contact inquiry@atomfair.com.

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1 – 4 $199.95
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Description

ATOMFAIR NVP CARBON COATED ALUMINUM 1AH 14-LAYER DRY POUCH CELL

14-LAYER MULTILAYER CORES

Product Overview

The ATOMFAIR NVP Carbon-Coated Aluminum 1Ah 14-Layer Dry Pouch Cell is an advanced, electrolyte-free multi-layer sodium-ion testing system engineered specifically for multi-interface solid state electrolyte pouch cell scaling studies. Distinct from single-layer baseline formats, this specialized 14-layer stacked dry cell architecture natively couples a dense polyanionic Sodium Vanadium Phosphate (NVP) cathode configuration alongside an engineered Al/C carbon-coated aluminum foil matrix substrate. This multilayer expansion yields precise electrochemical control under dense stack pressures, perfectly isolating bulk charging degradation variables from surface parasites. It serves as an uncompromised evaluation control for industrial institutions developing custom sodium electrolyte formulas while balancing premium carbon coated aluminum foil price metrics.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Cell Chemistry Base Sodium-Ion Multilayer Dry Pouch Cell Configuration (Electrolyte Unfilled)
Nominal Capacity 1 Ah
Voltage Range 2.5 V × 3.8 V
NP Ratio – (Optimized 14-Layer Multilayer Matrix Layout)
2. Cathode (Positive Electrode) Parameters
Material Type NVP (Sodium Vanadium Phosphate Polyanionic Matrix)
Active Material Percent 93.5%
Specific Capacity 90 mAh/g
Compaction Density 1.7 g/cc
Coating Areal Density 14 mg/cm2
Dimensions 45.5 × 64 mm
3. Anode (Negative Electrode) Parameters
Material Type Al/C (Carbon-Coated Aluminum Foil Architecture)
Active Material Percent
Specific Capacity
Compaction Density
Coating Areal Density
Dimensions 46.5 × 65 mm
4. Separator & Physical Package Metrics
Separator Specification 12 um PE + 2 um ceramic coating
Stacking Layer Configuration 14/15 Multilayer Precision Stacked Core Design
Manufacturing Rules Processed under strict ISO 9001 compliance standards conditions
Alternative Options Explore our related distinct multilayer polyanionic sodium core logs. For custom dimensions or layer stacking micro-adjustments, please contact our support team.

Key Features & Advantages

  • 14-Layer Multilayer Scaling freedom: Advanced layered alignment allows researchers to analyze bulk internal transport limits and current profiles across large multi-interface regions.
  • Polyanionic NVP Framework Stability: High thermal stability and an open 3D framework structure promote highly rapid sodium-ion diffusion tracks and predictable voltage profiling.
  • Electrolyte-Free Design Control: Dispatched vacuum-sealed and electrolyte-free, allowing research groups ultimate parameter freedom for polymer, gel, or custom non-aqueous sodium electrolyte optimization.
  • Carbon-Coated Aluminum Base: Specialized Al/C substrate matrix significantly improves internal electronic conductivity while preventing interfacial gas evolution at targeted voltage bands.

APPLICATION SCOPE: Multilayer polyanionic sodium-ion verification, custom sodium electrolyte compatibility testing, scaled dry cell prototyping, and industrial battery kinetics R&D.
PACKAGING: Sealed multilayer vacuum aluminum-plastic dry defensive pouch with custom institutional batch tracking control logs.
IMPORTANT NOTICE: This dry sodium pouch cell core is highly sensitive to ambient moisture exposure. Keep vacuum packs completely sealed and handle exclusively within an anhydrous inert gas glovebox environment to prevent contamination or premature polyanionic degradation before electrolyte injection and cell validation.

Frequently Asked Technical Questions

Why is ATOMFAIR NVP Pouch Cell preferred as a solid state electrolyte pouch cell?

ATOMFAIR NVP Pouch Cell functions as a premier solid state electrolyte pouch cell baseline for sodium-ion systems. It delivers an optimized NVP cathode chemistry matched with dense Al/C matrices, significantly boosting performance metrics and phase purity during laboratory testing workflows.

how to prevent moisture degradation in sodium batteries?

To successfully solve how to prevent moisture degradation in sodium batteries without secondary contamination, this multi-layer material must be handled strictly according to inert gas glovebox storage protocols before thermal processing.

How does ATOMFAIR NVP Pouch Cell compare to traditional alternative options regarding operational stability?

Compared to standard alternatives, the optimized matrix of ATOMFAIR NVP Pouch Cell incorporates specialized chemical doping. This unique architecture dramatically enhances structural resistance against degradation, preserving long-term validation integrity.

What material processing benefits does the microstructure of ATOMFAIR NVP Pouch Cell offer?

Boasting engineered particle structuring and optimized specific surface area, this product offers superior sinterability. The controlled form factor facilitates lower thermal processing thresholds and promotes ideal grain boundary integration during cell fabrication.

How is the phase purity and quality control of this research-grade batch validated?

Every competitive batch undergoes rigid analytical quality validation testing. Total elemental and metallic impurities are strictly regulated below strict industry thresholds to eliminate parasitic electronic leakage and maintain uncompromised data reproducibility.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR

Additional information

Weight 0.3 kg
Dimensions 23 × 15 × 3 cm