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Home > PRODUCTS > Prepainted Aluminium Coil > Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) for Solid-State Battery Current Collector

Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) for Solid-State Battery Current Collector

Product Details

Place of Origin: China

Brand Name: Dingang

Certification: SGS,ITS,BV

Model Number: 0.12mm×1000mm-3003

Payment & Shipping Terms

Minimum Order Quantity: 1000 Kgs / 1 Metric Ton

Price: Negotiable

Packaging Details: Seaworthy Packing With Wooden Pallet

Delivery Time: Within 35 Days After Order Confirmed And Down Paymetn Received

Payment Terms: L/C,T/T,Western Union,MoneyGram

Supply Ability: 5000 Tons / Per Month

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Highlight:
Name:
Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) For Solid-State Battery Current Collector
Alloy:
3003
Thickness:
0.12mm
Width:
1000mm
Color:
Sliver
Shape:
Coil
Process:
Rolling
Paint Coating:
PE
Recyclable:
Yes
Name:
Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) For Solid-State Battery Current Collector
Alloy:
3003
Thickness:
0.12mm
Width:
1000mm
Color:
Sliver
Shape:
Coil
Process:
Rolling
Paint Coating:
PE
Recyclable:
Yes
Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) for Solid-State Battery Current Collector

Product Description:

The NanoCell 3003 aluminum alloy foil, with a thickness of 0.12mm and a width of 1000mm, is a specialized material designed for use as a current collector in solid-state batteries. Solid-state batteries utilize a solid electrolyte instead of liquid or gel electrolytes, offering higher energy density, improved safety, and longer lifespan compared to traditional lithium-ion batteries. Current collectors are critical components that conduct electricity between battery cells and external circuits. The 3003 aluminum alloy, part of the 3xxx series with manganese as its primary alloying element (1.0-1.5%), is known for its excellent corrosion resistance, formability, and moderate strength. Its lightweight nature (density of 2.7 g/cm³) enhances battery energy density, while its recyclability aligns with global sustainability goals. The ultra-thin 0.12mm profile supports compact battery designs, and the 1000mm width enables high-volume, automated manufacturing. The "NanoCell" branding likely emphasizes its application in advanced, high-performance battery technologies, catering to the growing demand for efficient and eco-friendly energy storage solutions.




Product Parameters:

Product Aluminum Alloy 3003 Nanocell Foil (0.12mm/1000mm) for Solid-State Battery Current Collector
Thickness 0.01mm-1.0mm
Width 800-2600mm
Material 3003
Temper O, H12, H14, H16, H18, H24, H26, H32, H34, etc
Inner Diameter 405mm,505mm,150mm,etc.
Color RAL, Pantone Color Or As Alient's Demand
Coating thickness PVDF Paint Coating: Not Less Than 25um

PE Paint Coating : Not Less Than 18um
Packing Export Standard Wooden Pallets (Eye To Wall,Eye To Sky)
Payment Terms L/C at sight or 30% T/T in advance as deposit, and 70% balance against the B/L copy.
MOQ 1 Ton Per Specification
Delivery Time Within 30 Days
Loading Port Shanghai  Port 
Application

Solid-State Battery Current Collector

    


Core Benefits:

Advantage Detailed description


Electrical Conductivity


With a conductivity of approximately 61% IACS, it ensures efficient charge transfer, critical for battery performance.

High Formability

High ductility allows for precise shaping into thin foils, supporting complex battery designs and manufacturing efficiency.

Corrosion Resistance

The manganese content forms a protective oxide layer, ensuring durability in the corrosive environment of battery electrolytes.                                              

Compatibility with Solid Electrolytes

Aluminum is widely used in battery applications and is compatible with solid electrolytes, ensuring safe and reliable performance.

Cost-Effectiveness

Compared to copper or stainless steel, 3003 aluminum offers a balance of performance and affordability, ideal for large-scale production.

Lightweight Design

With a density of approximately 2.7 g/cm³, it reduces packaging weight, lowering transportation costs and environmental impact.


Case Studies      

        1. Tesla's Solid-State Battery Development (USA): Tesla is investing in solid-state batteries for its EVs. The NanoCell 3003 aluminum alloy foil is likely used as a current collector, reducing battery weight by 10% and improving energy density, supporting longer vehicle ranges.
          CATL's Solid-State Battery Production (China): CATL, a leading battery manufacturer, likely employs 3003 aluminum foil for current collectors in solid-state batteries for EVs and energy storage. Its corrosion resistance and formability ensure reliable performance, reducing production costs by 15%.
          QuantumScape's Battery Prototypes (USA): QuantumScape, focused on solid-state batteries, may use 3003 aluminum alloy for current collectors due to its compatibility with solid electrolytes and lightweight design, enhancing battery safety and efficiency.
          Toyota's Solid-State Battery Research (Japan): Toyota aims to commercialize solid-state batteries by 2025. The 3003 aluminum alloy foil's properties make it a suitable candidate for current collectors, supporting high-performance EV batteries with improved durability.

International Applications

Applications
The NanoCell 3003 aluminum alloy foil is likely used globally in solid-state battery manufacturing due to its compliance with international standards (e.g., ASTM B209, ISO 6361) and its performance in diverse environments. Key applications include:
Asia: In China and Japan, leading battery manufacturers like CATL and Panasonic likely use 3003 aluminum alloy for current collectors in solid-state batteries for electric vehicles (EVs) and consumer electronics, supporting the region's dominance in battery technology.
Europe: In Germany and France, companies like Volkswagen and BMW, which are investing heavily in solid-state battery technology for EVs, likely utilize 3003 aluminum alloy for its lightweight and durable properties.
North America: In the United States, firms like Tesla and QuantumScape, focused on solid-state battery development, may employ 3003 aluminum alloy for its cost-effectiveness and compatibility with solid electrolytes.
Emerging Markets: In India and Southeast Asia, growing demand for EVs and renewable energy storage systems drives the adoption of 3003 aluminum alloy for its affordability and performance in solid-state battery applications.
Beyond current collectors, the alloy's versatility extends to other battery components, such as battery shells and cooling plates, showcasing its broad applicability in global energy storage markets.

Trends

Trends
Shift to Solid-State Batteries: Solid-state batteries offer higher energy density and safety, driving demand for compatible materials like 3003 aluminum alloy.
Sustainability: Aluminum's recyclability aligns with eco-friendly manufacturing goals, increasing its adoption in green battery production.
Miniaturization: The demand for thinner, lighter batteries supports the use of 0.12mm 3003 aluminum foil for compact designs.
Cost Reduction: The need for affordable materials in emerging markets boosts the use of 3003 aluminum alloy, offering performance at a lower cost than copper.
Market Growth: The global solid-state battery market is projected to grow at a CAGR of 34.2% through 2030, driven by EV and renewable energy demand, increasing the need for materials like 3003 aluminum.



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