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Flux Battery

304 Stainless Steel Foil (Ultra-Thin, Double-Sided Polished)

304 Stainless Steel Foil (Ultra-Thin, Double-Sided Polished)

Regular price $39.99 USD
Regular price Sale price $39.99 USD
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SKU:LA044-1

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  • Purchase Orders Accepted
  • DDP Delivery: 5–12 Days
  • 30-day Return & Refund Policy

Description

Our 304 Stainless Steel Foil is manufactured to the highest laboratory standards to ensure experimental consistency. With a high chromium and nickel content, it provides a robust interface that resists oxidation and chemical degradation in various electrolyte environments. The foil's smooth, cold-rolled surface finish ensures excellent adhesion for active material slurries, making it a reliable choice for researchers investigating high-rate performance and long-term cycling stability.

Features

  • Double-Sided Polished: Achieves a mirror-like finish for minimal interfacial contact resistance (ICR) and superior adhesion of electrode slurries.
  • Ultra-Thin Profiles: Available in thicknesses as low as 0.01mm to maximize the energy density of test cells.
  • High Corrosion Resistance: Excellent stability in a wide range of organic and aqueous electrolytes.
  • Superior Mechanical Integrity: High tensile strength prevents tearing during manual or semi-automated coating processes.
  • Research Grade Purity: Controlled alloy composition (Cr 18-20%, Ni 8-10.5%) ensures reproducible experimental results.

Specifications

Parameter Specification
Material 304 Stainless Steel
Standard Thicknesses 0.01mm, 0.02mm, 0.03mm, 0.05mm (Customizable)
Surface Finish Double-sided Mirror Polished
Elongation ≥ 40%
Chemical Composition Cr: 18-20%, Ni: 8-10.5%, Mn: ≤2%, Si: ≤0.75%, C: ≤0.08%

Quick Answer

This high-purity 304 Stainless Steel Foil is specifically processed for electrochemical research, serving as a robust current collector for aqueous batteries, supercapacitors, and specific lithium-ion cathode configurations. Featuring a double-sided polished surface, it ensures exceptional electrical contact and uniform active material coating, making it a staple for precision lab-scale prototyping.

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