d(0) metal-alkyl complexes (M = Ti, Zr, and Hf) show specific activity and selectivity in olefin polymerization and oligomerization depending on their ligand set and charge. Here, we show by a combined experimental and computational study that the (13)C NMR chemical shift tensors of the α-carbon of metal alkyls that undergo olefin insertion signal the presence of partial alkylidene character in the metal-carbon bond, which facilitates this reaction. The alkylidene character is traced back to the Ï-donating interaction of a filled orbital on the alkyl group with an empty low-lying metal d-orbital of appropriate symmetry. This molecular orbital picture establishes a connection between olefin insertion into a metal-alkyl bond and olefin metathesis and a close link between the Cossee-Arlmann and Green-Rooney polymerization mechanisms. The (13)C NMR chemical shifts, the α-H agostic interaction, and the low activation barrier of ethylene insertion are, therefore, the results of the same orbital interactions, thus establishing chemical shift tensors as a descriptor for olefin insertion.
NMR chemical shift analysis decodes olefin oligo- and polymerization activity of d(0) group 4 metal complexes.
核磁共振化学位移分析揭示了d(0)族4金属配合物的烯烃低聚和聚合活性
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作者:Gordon Christopher P, Shirase Satoru, Yamamoto Keishi, Andersen Richard A, Eisenstein Odile, Copéret Christophe
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2018 | 起止号: | 2018 Jun 26; 115(26):E5867-E5876 |
| doi: | 10.1073/pnas.1803382115 | ||
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