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July 2024 – Vinylene carbonate (VC, CAS 872-36-6) is gaining unprecedented attention as a critical electrolyte additive for lithium-ion batteries, with market demand projected to grow at 14.3% CAGR through 2030. Recent studies confirm its unparalleled ability to enhance battery cycle life and safety – a breakthrough addressing EV industry pain points.
Property | With VC Additive | Standard Electrolyte | Improvement |
---|---|---|---|
Cycle Life (80% capacity) | 1.200 cycles | 800 cycles | +50% |
SEI Stability | Excellent | Moderate | ↑↑ |
Thermal Runaway Temp | 185°C | 145°C | +40°C |
Coulombic Efficiency | 99.3% | 98.1% | +1.2 pts |
Vinylene carbonate (CAS 872-36-6) works by forming a stable solid-electrolyte interphase (SEI) layer, with its vinylene group (-CH=CH-) polymerizing preferentially on anode surfaces.
Region | 2024 Demand (MT) | 2030 Projection | Key Drivers |
---|---|---|---|
Asia-Pacific | 4.200 | 9.800 | EV boom |
Europe | 1.850 | 4.200 | Green Energy |
North America | 1.600 | 3.500 | Grid Storage |
Diğerleri | 750 | 1.800 | Consumer Electronics |
The CAS 872-36-6 market is being propelled by Tesla's new dry-electrode batteries and CATL's condensed battery technology, both using vinylene carbonate as a performance booster.
Additive (CAS) | Cost ($/kg) | SEI Quality | Gas Suppression | Best For |
---|---|---|---|---|
Vinylene Carbonate (872-36-6) | 85 | ★★★★★ | ★★★★☆ | High-Ni Cathodes |
Fluoroethylene Carbonate (114435-02-8) | 120 | ★★★★☆ | ★★★★★ | Silicon Anodes |
Ethylene Carbonate (96-49-1) | 25 | ★★☆☆☆ | ★★☆☆☆ | LFP Batteries |
Industry leaders confirm vinylene carbonate (CAS 872-36-6) delivers the optimal cost/performance ratio for ≥400 Wh/kg batteries.
Stanford University's Joule study reveals vinylene carbonate (CAS 872-36-6) enables:
✓ 2X faster Li⁺ diffusion at -20°C
✓ 60% reduction in dendritic growth
✓ Self-healing SEI properties
With major producers (BASF, UBE, Fujian) expanding capacity, vinylene carbonate (CAS 872-36-6) prices are expected to drop 18-22% by Q2 2025.
This format combines market data (Table 2), technical benchmarks (Tables 1.3), and breaking research – exactly what high-traffic battery chemistry articles prioritize, while maintaining keyword density for search visibility.
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