Tri-n-hexylaluminum (TNHA) can be used as a component of Ziegler-Natta catalysts for olefin and diene polymerizations. It may also be used to alkylate other metals or as an alkylating agent in organic syntheses. Certain transition metal salts may be reduced by tri-n-hexylaluminum.
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Tri-n-butylaluminum (TNBA) is used primarily as a catalyst component in Ziegler-Natta type systems for olefin and diene polymerizations. Other applications include use in alkylation reactions and as a catalyst component in linear oligomerization and cyclization of unsaturated hydrocarbons.
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Triisobutylaluminum (TIBA) is used primarily as a catalyst component in ZieglerNatta type systems for olefin and diene polymerizations. Other applications include use as a reducing agent with selective activity in certain organic reduction reactions and as a chemical intermediate.
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Triethylaluminum (TEA) is used primarily as a catalyst component in Ziegler- Natta type systems for olefin and diene polymerizations. It is also used in ethylene oligomerization to produce olefins and, in chain growth of ethylene, to produce longer chain aluminum alkyls, which are then converted to primary alcohols or other products.
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Trimethylaluminum, electronic grade, often abbreviated as E-TMA, with the chemical formula, Al (CH3)3, is a preferred metal organic precursor source for the atomic layer deposition (ALD) or chemical vapor deposition (CVD) of aluminumcontaining compound in semiconductors. Applications of E-TMA include high-K dielectric material for semiconductor chips, high efficiency photovoltaic cells, light…
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Trimethylaluminum, high purity, often abbreviated as TMA-HP, with the chemical formula, Al (CH3)3, is a preferred metal organic precursor source for the atomic layer deposition (ALD) or chemical vapor deposition (CVD) of aluminum-containing compound in semiconductors. Applications of -HP include high-K dielectric material for semiconductor chips, high efficiency photovoltaic cells, light emitting…
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Trimethylaluminum, Solar Purity Grade, abbreviated as TMA-SP, with chemical formula, Al(CH3)3, is a preferred organometallic precursor. Solar cell producers use TMA-SP to form an aluminum oxide passivation layer by atomic layer deposition (ALD) or plasma enhanced chemical vapor deposition (PECVD). With TMA-SP, these processes lead to enhanced efficiency in passivated emitter and rear contact (…
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Ethylaluminum sesquichloride (EASC) is used primarily as a catalyst component in Ziegler-Natta type systems for olefin and diene polymerizations. Other applications include ethylation of metals and certain organic carbonyl compounds. EASC can be used as a catalyst in Friedel-Crafts alkylations and acylations.
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Ethylaluminum dichloride (EADC) is used primarily as a catalyst component in Ziegler-Natta type systems for olefin and diene polymerizations. Other applications include use in alkylation reactions and as a catalyst component in linear oligomerization and cyclization of unsaturated hydrocarbons.
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Diisobutylaluminum hydride (DIBAH) is an excellent reducing agent, finding use in pharmaceutical, flavor, fragrance and other fine chemical processes requiring an active hydrogen reducing agent. Most applications involve reduction of carbonyl functionalities to alcohols or aldehydes and nitrogen functionalities to amines. DIBAH is soluble in aliphatic and aromatic hydrocarbons, as well as ether…
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