Neutral and cationic methallyl nickel complexes in alkene activation: a combined DFT, ESI-MS and chemometric approach
Abstract
Herein, we report a comparative study of ethylene activation and 1-hexene isomerization carried out with isomeric neutral and cationic methallyl nickel complexes L1Ni(η3-C3H5) and [L1Ni(η3-C3H5)][B(ArF)4] in the presence of borane co-catalysts. To understand the reactivity of the nickel complexes withNacNac ligands, we used chemometric methods to classify different catalysts reported to date. The mechanism of the interaction of [L1Ni(η3-C3H5)][B(ArF)4]/B(C6F5)3with 1-hexene was studied by ESI-MS which allowed the detection of cationic species formedin situ. Moreover, there is a very small difference in reactivities from combination of nickel complexes and borane co-catalysts used for alkene isomerization, while the reactivity with ethylene of both systems is very different; [L1Ni(η3-C3H5)][B(ArF)4]/B(C6F5)3produces butene, while L1Ni(η3-C3H5)/B(C6F5)3forms polyethylene. Furthermore, DFT studies revealed that the origin of the catalytic activity in the cationic and neutral methallyl nickel complexes co-activated by B(C6F5)3is mainly from direct steric effects of the ligand-nickel center where the conformation of the chelate ring is affected by the catalyst symmetry. This work demonstrates how the cationic or neutral nature of the same system affects its catalytic and structural properties.
Más información
| Título según WOS: | Neutral and cationic methallyl nickel complexes in alkene activation: a combined DFT, ESI-MS and chemometric approach |
| Título según SCOPUS: | Neutral and cationic methallyl nickel complexes in alkene activation: a combined DFT, ESI-MS and chemometric approach |
| Título de la Revista: | Catalysis Science and Technology |
| Volumen: | 11 |
| Número: | 22 |
| Editorial: | Royal Society of Chemistry |
| Fecha de publicación: | 2021 |
| Página final: | 7485 |
| Idioma: | English |
| DOI: |
10.1039/d1cy01595h |
| Notas: | ISI, SCOPUS |