Structural Origins of a Dramatic Variation in Catalyst Efficiency in Enantioselective Alkene Aziridination: Implications for Design of Ligands Based on Chiral Biaryldiamines
摘要:
Charge reversal (CR) and neutralization reionization (NR) experiments carried out on a 4-sector mass spectrometer demonstrate that isotopically labeled, linear C-4 anion rearranges upon collisional oxidation. The cations and neutrals formed in these experiments exhibit differing degrees of isotopic scrambling in their fragmentation patterns, indicative of (at least) partial isomerization of both states. Theoretical studies, employing the CCSD(T)/aug-cc-pVDZ//B3LYP/6-31G(d) level of theory, favor conversion to the rhombic C-4 isomer on both cationic and neutral potential-energy surfaces with the rhombic structures predicted to be slightly more stable than the linear forms in each case. The combination of experiment with theory indicates that the elusive rhombic C-4 is formed as a cation and as a neutral following charge stripping of linear C-4(-)
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关键词:
acetonitrile solvent model molecular dynamics simulation AMBER force field RESP approach thermodynamics properties and radial distribution functions
DOI:
10.1021/ja994353d
被引量:
年份:
2000
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