Title of article :
Infrared spectra and density functional calculations of the M←NCCCH3, η2–M(NC)–CH3, CH3–MNC, CH2double bond; length as m-dashM(H)NC, and CHtriple bond; length of mdashM(H)2NC complexes produced by reactions of Group 6 metal atoms with acetonitrile
Author/Authors :
Han-Gook Cho، نويسنده , , Lester Andrews، نويسنده ,
Issue Information :
دوفصلنامه با شماره پیاپی سال 2012
Pages :
9
From page :
25
To page :
33
Abstract :
The M←NCCH3, η2–M(NC)–CH3, CH3–MNC, CH2double bond; length as m-dashM(H)NC, and HCtriple bond; length of mdashM(H)2NC complexes are produced by reactions of laser-ablated Group 6 metal atoms with acetonitrile and identified from the matrix IR spectra through isotopic substitution and comparison to frequencies calculated by density functional theory in the harmonic approximation (B3LYP/6-311++(3df,3pd) and BPW91/6-311++G(3df,3pd), this all-electron set for Cr, and SDD for Mo and W). Good general agreement is shown in tables for all observed frequencies and these calculations. The products follow the reaction path proposed earlier for Group 4 and 5 metal reactions, which are supported by density functional energy calculations. The M←NCCH3 complex strengthens the assumption that the lone electron pair on the N-end first attracts the metal atom. The π-complexes show that the back-donation of the Group 6 metal is weaker than those of Zr and Group 5 metals. The observed products clearly show the increasing preference for the higher oxidation-state complex with increasing atomic number of the Group 6 metal, and subsequent photolysis increases the yields for the higher oxidation-state complexes. The methylidyne isocyanide HCtriple bond; length of mdashW(H)2NC has a Cs structure similar to the HCtriple bond; length of mdashW(H)2X complexes prepared earlier.
Keywords :
DFT calculations of frequencies and structures , W , Mo , Acetonitrile reaction products , Cr , Matrix infrared spectra
Journal title :
Journal of Organometallic Chemistry
Serial Year :
2012
Journal title :
Journal of Organometallic Chemistry
Record number :
1372427
Link To Document :
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