1Ah NMO Hard Carbon Dry Pouch Cell Sodium-Ion ATOMFAIR®

$70.00

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.

1Ah research grade Na-ion dry pouch cell with NMO cathode (60x80mm) and hard carbon anode (63x84mm). Dry core for custom electrolyte. Order now.

Quantity Price
1 – 4 $70.00
5 – 19 $119.95
20 – 49 $89.95
50+ $69.95
SKU: AAPONMOHC0A2A0
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Description

ATOMFAIR® 1AH NMO || HC DRY POUCH CELL

SODIUM (Na) ION TECHNOLOGY | 8/9 LAYERS

Product Overview

The ATOMFAIR® 1Ah NMO || HC Dry Pouch Cell is a high-performance, research-grade energy storage solution explicitly engineered for advanced sodium-ion battery research and laboratory performance testing. Combining a layered Sodium Manganese Oxide (NMO) cathode with a high-capacity Hard Carbon (HC) anode, this cell configuration ensures reliable electrochemical behavior over a broad 2.0V to 4.3V window. Provided as a completely unfilled dry core, it secures maximum validation freedom for evaluating custom electrolytes while maintaining competitive nmo dry pouch cell price advantages.

Technical Specifications

PARAMETER VALUE
1. Core Cell Parameters
Capacity 1 Ah
Voltage Range 2.0V ~ 4.3V
Lamination Layers 8/9
NP Ratio 1.07
Separator 9 um PP + 2um + 2 um ceramic
2. Cathode Parameters
Material Type NMO (Sodium Manganese Oxide)
Active Material Percent 94.92%
Specific Capacity (mAh/g) 98
Compaction Density (g/cc) 3
Coating Areal Density (mg/cm2) 14.1
Dimensions (mm) 60*80
3. Anode Parameters
Material Type HC (Hard Carbon)
Active Material Percent 95.5%
Specific Capacity (mAh/g) 300
Compaction Density (g/cc) 1
Coating Areal Density (mg/cm2) 4.9
Dimensions (mm) 63*84
Manufacturing Rules Processed under strict [standard laboratory testing parameters] compliance conditions to govern laminate stack consistency and eliminate volatile variables.
Alternative Options Explore our extended material lines for custom lamination counts, alternative specific capacities, or Prussian blue configurations. For bulk institutional quotas, contact our engineering division.


Key Features & Advantages

  • 8/9 Layer Laminated Design: Balanced internal lamination layer architectures yield exceptionally uniform mechanical stack integrity and optimal rate distribution.
  • High-Density NMO Cathode System: Composed of 94.92% active material NMO to achieve a reliable and stable layered sodium intercalation framework.
  • Advanced Composite Separator: Engineered 9 µm PP base film combined with a symmetric 2 µm+2 µm dual-ceramic coating dramatically enhances thermal threshold resistance.
  • Precise Plate Size Coordination: Perfectly offset dimensions (60×80 mm cathode vs 63×84 mm anode) establish an ideal 1.07 NP ratio to prevent metal plating anomalies.

APPLICATION SCOPE: Sodium-ion battery research, material characterization profiles, and multi-layer electrochemical performance testing.
PACKAGING: Standard industrial electrostatic protection packaging engineered to shield components from environmental trace degradation.
IMPORTANT NOTICE: For research and development use only. Unfilled dry pouch cells exhibit rigorous environmental humidity sensitivities. Interior active parameters must be handled exclusively within low-dew-point inert gas gloveboxes to execute **how to fill nmo dry pouch cell** operations safely without degradation.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The dry pouch cell contains moisture-sensitive electrodes and must be stored in an inert, dry atmosphere to prevent degradation. The cell's terminals pose a short-circuit risk and should be insulated during handling and storage.

  • Moisture Sensitivity: Store the pouch cell in an argon-filled glovebox with less than 1 ppm water and oxygen to avoid electrode contamination.
  • Electrical Short Circuit Prevention: Cover the exposed tabs with insulating tape and avoid contact with conductive surfaces during transfer and storage.

This procedure details the steps to fill the dry pouch cell with electrolyte and activate it for testing. Proper glovebox technique and sealing are critical to cell performance and safety.

Required Equipment: Argon-filled glovebox, Electrolyte syringe (0.5-1 mL), Impulse heat sealer, Insulated tweezers

  1. Transfer to glovebox
    Transfer the dry pouch cell into an argon-filled glovebox without exposing it to ambient air.
  2. Inject electrolyte
    Inject the specified volume of electrolyte into the pouch through the pre-cut fill port using a clean syringe.
  3. Seal the pouch
    Seal the fill port immediately using an impulse heat sealer with parameters set for the pouch material thickness.
  4. Allow wetting
    Allow the sealed cell to rest for at least 2 hours at room temperature to ensure complete wetting of the electrodes.
  5. Formation cycling
    Perform initial formation cycles at a C/10 rate to stabilize the solid electrolyte interphase before higher-rate testing.

What is the trade-off between using a dry pouch cell configuration and achieving consistent electrochemical performance across multiple NMO || Hard Carbon cells?

Dry pouch cells require manual electrolyte filling, which introduces batch-to-batch variability unless strict protocols are followed. The Atomfair 1Ah NMO || Hard Carbon cell is designed for research, allowing custom electrolyte and interface optimization, but consistency depends on the researcher's filling technique and environmental control.

Can the NMO || Hard Carbon dry pouch cell be directly integrated into standard Na-ion battery test fixtures without modification?

The cell has electrode dimensions of 60×80 mm (NMO cathode) and 63×84 mm (hard carbon anode), with a nominal capacity of 1 Ah. These dimensions are subject to actual size, so compatibility with standard fixtures should be verified. Additionally, the dry configuration requires electrolyte filling before testing, which may necessitate specialized filling equipment.

What storage conditions are required to prevent degradation of the dry NMO || Hard Carbon pouch cell before electrolyte filling?

The cell must be stored in a cool, dry environment to prevent electrode degradation, as stated in the product packaging guidelines. No electrolyte is included, so the dry core remains inactive until filled, but moisture exposure can still compromise the NMO cathode and hard carbon anode materials.

The Atomfair 1Ah NMO || Hard Carbon dry pouch cell provides a research-grade sodium-ion platform with an optimized NMO cathode and hard carbon anode, delivering high energy density and enhanced charge/discharge kinetics. Its dry core configuration mandates custom electrolyte filling and controlled storage to prevent electrode degradation, making it suitable for specialized electrochemical laboratories.

Positive

  • NMO/Hard Carbon high energy density: The NMO cathode paired with Hard Carbon anode is explicitly optimized for high-performance applications, providing elevated energy density for demanding research and development.
  • Enhanced charge/discharge kinetics: Hard Carbon composition improves conductivity, resulting in faster charge/discharge rates and overall superior cell kinetics for electrochemical testing.

Trade-offs

  • Electrolyte not included dry core: The cell is shipped as a dry core without electrolyte; the user must source and fill electrolyte, introducing handling complexity and potential contamination risk.
  • Storage sensitivity to environment: The product must be stored in a cool, dry environment to prevent electrode degradation, imposing controlled storage conditions for long-term stability.

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). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).

Additional information

Weight 0.3 kg
Dimensions 23 × 15 × 3 cm