The potential energy surface of the singlet silylenoid H,SiNaF has been examined by ab initio calculations. The 3-21G and 6-3 1 G\* basis sets were used for full geometry optimizations. Four equilibrium structures and three isomeric transition states were located. The calculations have shown that th
Theoretical studies on structures and reactivities of organocuprate(I) and organocopper(III) species
β Scribed by Masahiro Yamanaka; Akiko Inagaki; Eiichi Nakamura
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 136 KB
- Volume
- 24
- Category
- Article
- ISSN
- 0192-8651
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β¦ Synopsis
Abstract
Systematic evaluation of method and basis set on the structure and energetics of organocuprate(I) and organocopper(III) species has been carried out. Various structures of organocuprate(I) and organocuprate(III) complexes were optimized with the HF, MP2, and B3LYP methods, and compared with the structures determined by Xβray crystallography (i.e., Me~2~Cu(I)^β^, (CF~3~)~4~Cu(III)^β^). Both the MP2 and B3LYP methods reasonably reproduce the Xβray structures while the HF method does not. Using larger basis set and incorporating the relativistic effects for Cu afford the best results. In the studies on the energetics of a Liο£ΏCu cluster model (Me~2~CuLi Β· LiCl) and Me~3~Cu model with the MP2, MP3, MP4DQ, MP4SDQ, CCSD(T), and B3LYP methods, the B3LYP method gives energetics similar to those obtained with the CCSD(T) method with much less cost, and hence, is judged to be the best practical method. The studies have shown that B3LYP method with the basis set incorporating the relativistic effective core potentials for Cu and the 6β31G* basis set for the rest is the theoretical method that is the most costβeffective for the studies of the structure and energetics of organocuprate(I) and organocopper(III) species. Β© 2003 Wiley Periodicals, Inc. J Comput Chem 24: 1401β1409, 2003
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