LiCoO2 Double-Sided Coated Aluminum Foil 5 Sheets

$89.00

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 LiCoO2 coated aluminum foil for lithium-ion electrodes, single- or double-sided, under ISO-standard battery electrode compliance. Order now.

SKU: AFMSFIYW080
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LiCoO2 Double-Sided Coated Aluminum Foil 5 Sheets
Product Type: Research electrode material format
Research-grade laboratory product
Product Overview

LiCoO2 Double-Sided Coated Aluminum Foil 5 Sheets is a research-grade Lithium cobalt oxide (LiCoO2) electrode sheet engineered for laboratory battery cell development. Key specifications include coating/foil thickness of 10-20 µm per side, coating thickness range of 10–20 µm, double-sided coating, sheet size of 230 × 90 mm, pack size of 5 sheets per pack, current collector of Aluminum foil. The active material exhibits nominal voltage of 3.7 V, theoretical capacity of 274 mAh/g, Layered (R-3m, α-NaFeO2) crystal structure, operating range of -20 to 55 °C, first-cycle coulombic efficiency of 95-97%. Configured as a electrode polarity to confirm for use in coin-cell, pouch-cell, and laboratory test-cell platforms.

Performance Features
  • Active Material / Chemistry: Lithium cobalt oxide (LiCoO2 / LCO).
  • Sheet Size / Coating Area: 230 × 90 mm.
  • Pack Size: 5 sheets per pack.
  • Coating / Foil Thickness Reference: 10-20 µm per side.
  • Electrode Polarity: Electrode polarity to confirm.
  • Coating Side: Double-sided.
  • Current Collector: Aluminum foil.
Technical Specifications
Parameter Specification / Available Values
Atomfair Model AF-LCO-D230
Active Material / Chemistry Lithium cobalt oxide (LiCoO2 / LCO)
Sheet Size / Coating Area 230 × 90 mm
Pack Size 5 sheets per pack
Coating / Foil Thickness Reference 10-20 µm per side
Electrode Polarity Electrode polarity to confirm
Coating Side Double-sided
Current Collector Aluminum foil
Sheet Format 230 × 90 mm
Coating Thickness Range 10–20 µm
Nominal Voltage 3.7 V
Theoretical Specific Capacity 274 mAh/g
Crystal Structure Layered (R-3m, α-NaFeO2)
Operating Temperature Range -20 to 55 °C
Tap Density 2.0-2.4 g/cm³
Particle Size (D50) 5-15 µm
BET Surface Area 0.3-0.6 m²/g
Electronic Conductivity 10⁻³ S/cm
Coulombic Efficiency (1st cycle) 95-97%
Electrolyte Compatibility Standard carbonate-based (Li-ion); aqueous (Zn-ion for MnO2)
Recommended Cut-off Voltage Per buyer’s cell design protocol
Shelf Life (sealed, dry storage) 12 months at < -10 °C / 24 months at < -25 °C
Moisture Content (as-shipped) < 200 ppm (Karl Fischer)
PVDF Binder Content (typical) 4-6 wt%
Carbon Additive Content (typical) 2-4 wt%
PROCUREMENT CHECK: Confirm model, configuration, and quantity before quotation.
DOCUMENTATION REVIEW: Review specifications against laboratory use requirements.
ACCESSORY MATCHING: Accessories and consumables available per selected configuration.
INQUIRY NOTE: Include model, configuration, and quantity when requesting support.
LABORATORY PROCUREMENT SUPPORT
For model selection, accessory matching, platform compatibility or configuration confirmation, contact our technical sales team.
INQUIRY: inquiry@atomfair.com
Supplier: Atomfair
Brand: ATOMFAIR®

LiCoO2 coated aluminum foil is sensitive to moisture and elevated voltage. It must be stored sealed in a cool, dry place and handled with appropriate PPE to prevent degradation.

  • Moisture Sensitivity: Keep containers tightly sealed or handle exclusively within an anhydrous inert gas environment to prevent phase contamination or moisture degradation before cell assembly.
  • Voltage Limit: Avoid operating above 4.2V vs. Li/Li⁺ to prevent surface structural transition of the LCO cathode.
  • Storage Conditions: Store in a cool, dry place away from moisture, environmental contaminants, and direct sunlight.
  • Personal Protection: Use appropriate personal protective equipment (PPE) when handling this material.
  • Disposal: Follow local regulations for safe material disposal.

How does the uniform slurry distribution in this LiCoO₂ coated aluminum foil optimize charge-transfer kinetics?

The uniform slurry distribution ensures consistent particle coating across the aluminum foil substrate, reducing electrode resistance and improving the electrode-electrolyte interface. This directly enhances charge-transfer kinetics, as stated in the product specifications, contributing to higher battery efficiency and rate capability.

What is the maximum operating voltage limit for this LCO coated foil to prevent surface structural transition?

The product's important notice states that advanced LCO cathodes can undergo surface structural transition at elevated cutoff voltages above 4.2V vs. Li/Li⁺. Therefore, the recommended operating voltage is ≤4.2V to avoid phase contamination and performance degradation. This constraint is critical for high-voltage cell design.

What handling and storage conditions are required to prevent moisture degradation of this LCO coated aluminum foil?

Store in a cool, dry place away from moisture, environmental contaminants, and direct sunlight. Prior to cell assembly, keep containers tightly sealed or handle exclusively within an anhydrous inert gas environment to prevent moisture absorption and phase contamination. Always use appropriate PPE when handling, as per the product's handling notice.

This LiCoO₂-coated aluminum foil provides a high-crystallinity layered rock-salt cathode on a battery-grade substrate, engineered for volumetric energy density and cycle stability in lab-scale lithium-ion cells. The primary trade-off is its voltage ceiling: operation above 4.2V vs. Li/Li⁺ risks surface structural transition, and strict moisture/inert-gas handling is required before assembly.

Positive

  • High volumetric energy density: The LiCoO₂ layered rock-salt chemistry on an ultra-flat aluminum substrate improves volumetric capacity and discharge efficiency, beneficial for high-voltage power applications and compact cell formats.
  • Uniform slurry coating for kinetics: Uniform slurry distribution enhances charge-transfer kinetics and cell-to-cell consistency, supporting baseline testing control and electrolyte validation in R&D workflows.

Trade-offs

  • Voltage ceiling at 4.2V: At elevated cutoff voltages above 4.2V vs. Li/Li⁺, the LCO surface can undergo structural transition, risking phase contamination or capacity loss; cells must be voltage-limited.
  • Moisture and contamination sensitivity: Storage and handling require a cool, dry environment or anhydrous inert gas to prevent moisture-induced degradation before assembly; PPE is mandatory and containers must stay sealed.

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).