Computational Transition-State Design Provides Experimentally Verified Cr(P,N) Catalysts for Control of Ethylene Trimerization and Tetramerization
收藏Figshare2018-01-11 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Computational_Transition-State_Design_Provides_Experimentally_Verified_Cr_P_N_Catalysts_for_Control_of_Ethylene_Trimerization_and_Tetramerization/5782230
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Computational design of molecular homogeneous organometallic catalysts followed by experimental realization remains a significant challenge. Here, we report the development and use of a density functional theory transition-state model that provided quantitative prediction of molecular Cr catalysts for controllable selective ethylene trimerization and tetramerization. This computational model identified a general class of phosphine monocyclic imine (P,N)-ligand Cr catalysts where changes in the ligand structure control 1-hexene versus 1-octene selectivity. Experimental ligand and catalyst synthesis as well as reaction testing quantitatively confirmed predictions.
创建时间:
2018-01-11



