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Home > Ethylene Trimerization Using Chromium Pyridyl Amine Complexes: A Computational Study

Ethylene Trimerization Using Chromium Pyridyl Amine Complexes: A Computational Study

ABSTRACT

Selective trimerization of ethylene to produce 1-hexene is a commercially practiced process that yields valuable comonomer for linear low density polyethylene production. Several years ago, ExxonMobil chemists developed a family of chromium catalysts useful for ethylene trimerization, but a mechanistic understanding of the catalysis remained elusive. This talk presents a mechanistic proposal to explain the catalytic selectivity, supported by a computational exploration of proposed cycle. Results will be discussed in terms of geometric requirements for reaction and the fundamental steps involved in catalysis.

3:30pm | Mechanical Engineering Building (MEC) Rm 205
2019
Friday, September 20, 2019
Fall [1]
Professor Glen Alliger
ExxonMobil
Professor Charlie Machan

Source URL:https://chemistry.as.virginia.edu/ethylene-trimerization-using-chromium-pyridyl-amine-complexes-computational-study

Links
[1] https://chemistry.as.virginia.edu/semester/fall