Trapping the Short‐Chain Odd Carbon Number Olefins Using Nickel( II )‐Catalyzed Tandem Ethylene Oligomerization and Friedel‐Crafts Alkylation of Toluene
Улавливание олефинов с нечетным числом атомов углерода в короткой цепи с использованием тандемной олигомеризации этилена и алкилирования толуола по Фриделю–Крафтсу, катализируемых никелем(II)
2023-05-31
SCID: 54.1/5r59su2b
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Friedel–Crafts alkylationNickel(II) catalysisX-ray diffractionethylene oligomerizationshort-chain odd-carbon olefins
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Abstract (AI)
Comprehensive Summary Nickel(II) complexes with pyrazole‐based ligands are widely employed in catalysis of ethylene oligomerization and subsequent Friedel‐Crafts alkylation of toluene. We have prepared ten new nickel(II) dibromide complexes with various substituted bis(azolyl)methanes. They have been characterized using 1 H NMR, IR, high resolution mass spectrometry and elemental analysis. The structures of three complexes have been unambiguously established using X‐ray diffraction. It was found that these complexes in the presence of Et 2 AlCl or Et 3 Al 2 Cl 3 are active both in ethylene oligomerization and Friedel‐Crafts alkylation processes (activity up to 3720 kg oligomer ·mol[Ni] −1 ·h −1 ). The use of Et 3 Al 2 Cl 3 results in a higher share of alkylated products (up to 60%). Moreover, catalytic systems activated with Et 3 Al 2 Cl 3 produced small amounts of odd carbon number olefins (up to 0.8%). The Friedel‐Crafts alkylation was used as a trap for previously undetected short‐chain odd carbon number olefins (C 3 and C 5 ).
Key Findings
1
Catalytic oligomerization activity reached up to 3720 kg oligomer·mol[Ni]⁻¹·h⁻¹.
2
Et₃Al₂Cl₃ increased the proportion of alkylated products to as much as 60% and generated up to 0.8% odd-carbon-number olefins.
3
Friedel–Crafts alkylation trapped previously undetected short-chain odd-carbon-number olefins, specifically C₃ and C₅ species.
4
Ten new nickel(II) dibromide complexes containing substituted bis(azolyl)methane ligands were synthesized and characterized; three structures were confirmed by X-ray diffraction.
5
The nickel complexes, activated with Et₂AlCl or Et₃Al₂Cl₃, catalyze both ethylene oligomerization and subsequent Friedel–Crafts alkylation of toluene.
Research Object
Nickel(II) pyrazole-based bis(azolyl)methane complexes catalyzing tandem ethylene oligomerization and Friedel–Crafts alkylation of toluene
Research Subject
Catalytic activity and product selectivity, including the formation and Friedel–Crafts trapping of short-chain odd-carbon-number olefins (C3 and C5)
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2023-05-31
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