Triethylaluminum (CAS 97-93-8): High-Purity Co-catalyst for Polyolefin Production

Discover the essential role of Triethylaluminum (TEA) as a high-performance co-catalyst in modern olefin polymerization. As a leading manufacturer and supplier in China, we provide ultra-pure TEA crucial for Ziegler-Natta and metallocene catalyst systems, driving efficiency and product quality in polyethylene and polypropylene manufacturing. Request a quote today.

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Advantages of Partnering for Triethylaluminum

Enhanced Catalyst Performance

Utilizing our high-purity Triethylaluminum as a co-catalyst significantly boosts the activity and selectivity of Ziegler-Natta and metallocene catalysts, leading to improved polymer yield and quality in your production.

Process Control & Efficiency

As a critical component in olefin polymerization, Triethylaluminum allows for precise control over molecular weight distribution and polymer microstructure, ensuring consistent and efficient manufacturing of polyolefins.

Reliable Global Supply Chain

We are a dedicated manufacturer and supplier of Triethylaluminum in China, offering a stable and dependable supply chain, competitive pricing, and prompt delivery to meet your operational needs.

Key Applications of Triethylaluminum

Polyolefin Production

Triethylaluminum is indispensable for the industrial production of polyethylene and polypropylene, acting as a co-catalyst that activates polymerization catalysts and dictates polymer characteristics.

Fine Chemical Synthesis

As a potent alkylating agent, TEA is employed in various organic synthesis pathways for producing specialty chemicals and advanced materials, underscoring its versatility in chemical manufacturing.

Petrochemical Refining

In petrochemical processes, Triethylaluminum serves as a vital scavenger for impurities like sulfur compounds in hydrodesulfurization, contributing to the production of cleaner fuels.

Organometallic Chemistry

It acts as a precursor for other organoaluminum compounds and is a crucial reagent in organometallic chemistry research and development, pushing the boundaries of chemical innovation.