Hard Carbon Anode Electrode Sheet 15 mg/cm² 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.

Research grade D04 hard carbon anode electrode sheet, double-sided 15 mg/cm² on carbon-coated Al foil, 300 mAh/g capacity, 5 sheets/pack. Order now.

SKU: AF-BM-S-AHC0-AD15-5P00
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ATOMFAIR® HC-D04 HARD CARBON (HC) ELECTRODE SHEET

RESEARCH GRADE MATERIAL

Product Overview

Atomfair HC-D04 is a premium Hard Carbon (HC) anode electrode sheet, double-side coated with 15 mg/cm² via a precision wet process. Explicitly tailored for sodium-ion battery R&D, this configuration ensures optimal layer uniformity. Each pack provides 5 sheets, delivering the reproducible quality required for high-fidelity laboratory evaluation, batch benchmarking, variable elimination, and reliable electrochemical performance analysis. Geometric adjustments regarding coating thickness, width, or base foil structures are fully supported.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Electrochemical Design
Product Code D04
Coating Material HC / Hard Carbon
Active Material Ratio 94.50%
Coating Density 15 mg/cm²
Coating Area 152 mm × 110 mm
Coating Type Double-sided
Substrate Material Carbon-coated aluminum foil
Current Collector Areal Density 3.53 mg/cm²
Substrate Thickness 12 + 0.5 + 0.5 μm
Substrate Size 186 mm × 110 mm
Compaction Density 1 g/cm³
Capacity 300 mAh/g
Coating Process Wet Process
Manufacturing Rules Processed under strict laboratory research grade standard compliance conditions
Alternative Options Explore our related catalog or custom designs. For urgent technical custom requests or bulk inquiries, please contact our support team.


Key Features & Advantages

  • High Active Content Formulation: Incorporates a 94.50% active material ratio to sustain a reversible target capacity of 300 mAh/g.
  • Precision Wet Processing: Assures uniform 15 mg/cm² mass loading and robust structural interface control across both coated layers.
  • Carbon-Modified Foil Substrate: Employs carbon-coated aluminum current collectors to maximize mechanical anchoring and decrease contact resistance.
  • Tailored Parametric Customization: Geometric modifications regarding layout width, coating thickness, or base foil structures are fully supported.

APPLICATION SCOPE: Sodium-ion battery research & development, anode structural characterization, material evaluation, and quantitative cell testing workflows.
PACKAGING: Securely packaged with 5 sheets/pack to protect strict batch validation constants.
IMPORTANT NOTICE: Standard preparation timeline requires 12 hours under vacuum baking at 100°C before thermal assembly. Handle with care under appropriate laboratory environments to prevent moisture absorption or phase contamination. Disclaimer: Sold exclusively for laboratory research.

TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or custom fabrication inquiries.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The electrode sheet requires vacuum baking at 100°C for 12 hours before thermal assembly to ensure proper performance. The material is moisture-sensitive and must be handled in controlled laboratory environments to prevent contamination.

  • Vacuum Baking Requirement: The electrode sheet must be vacuum baked at 100°C for 12 hours prior to thermal assembly.
  • Moisture Sensitivity: Handle the material in dry, inert conditions to prevent moisture absorption and phase contamination.
  • Laboratory Compliance: All processing must adhere to strict laboratory research grade standard compliance conditions.

What is the significance of the 94.50% active material ratio and double-side coating for sodium-ion battery anode performance?

The high active material ratio of 94.50% minimizes binder and conductive additive content, maximizing the reversible capacity of 300 mAh/g. The double-side coating at 15 mg/cm² ensures uniform mass loading and optimal layer uniformity, critical for reproducible electrochemical characterization in sodium-ion R&D.

What is the required vacuum baking procedure before assembling the HC-D04 electrode into a sodium-ion cell?

The HC-D04 electrode requires a standard preparation of 12 hours under vacuum baking at 100°C before thermal assembly. This step is essential to remove moisture and adsorbed gases from the hard carbon and carbon-coated aluminum foil, preventing phase contamination and ensuring consistent electrochemical performance.

How should the carbon-coated aluminum foil substrate of the HC-D04 electrode be handled to maintain mechanical anchoring and low contact resistance?

The carbon-coated aluminum foil substrate is designed to maximize mechanical anchoring and decrease contact resistance, but it must be handled with care in appropriate laboratory environments to prevent moisture absorption or phase contamination. The electrode sheets are packaged securely in sets of 5 to maintain batch validation constants, and should be stored in a dry, inert atmosphere before use.

This double-side-coated hard carbon anode (94.5% active material, 300 mAh/g on a carbon-coated aluminum foil) is configured for sodium-ion battery R&D, delivering uniform 15 mg/cm² loading for reproducible cell builds, but it requires a 12-hour vacuum bake at 100°C before assembly and strict moisture control.

Positive

  • High active material ratio with 300 mAh/g capacity: The 94.50% hard carbon active material loading supports a reversible capacity of 300 mAh/g, providing a high-fidelity anode platform for sodium-ion cell evaluation.
  • Carbon-coated aluminum current collector: The carbon-modified foil substrate enhances mechanical anchoring of the coating and reduces contact resistance, improving electrode integrity and electrochemical interface performance.

Trade-offs

  • Requires 12-hour vacuum bake before use: The electrode sheet must be vacuum-baked at 100°C for 12 hours prior to thermal assembly, adding a mandatory preparation step and requiring vacuum oven infrastructure.
  • Sensitive to moisture and phase contamination: The product must be handled in appropriate laboratory environments to prevent moisture absorption or phase contamination, necessitating controlled storage and dry handling conditions.

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).