Title of article :
Spectral reconstruction of in situ FTIR spectroscopic reaction data using band-target entropy minimization (BTEM): application to the homogeneous rhodium catalyzed hydroformylation of 3,3-dimethylbut-1-ene using Rh4(CO)12
Author/Authors :
Chuanzhao Li، نويسنده , , Effendi Widjaja، نويسنده , , Marc Garland، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
9
From page :
126
To page :
134
Abstract :
The homogeneous catalytic hydroformylation of 3,3-dimethylbut-1-ene was studied, starting with Rh4(σ-CO)9(μ-CO)3 as catalyst. The multiple experiment in situ spectroscopic data were preconditioned to subtract the absorbance due to background moisture, carbon dioxide, and solvent. The preconditioned data were then subjected to band-target entropy minimization (BTEM) in order to recover the pure component spectra of the species present—using no libraries and no a priori information. The pure component spectra of the main species present, namely, the organic reactant 3,3-dimethylbut-1-ene, the organic product 4,4-dimethylpentanal, the catalyst precursor Rh4(σ-CO)9(μ-CO)3, and the observable organometallic intermediate RCORh(CO)4, were all readily recovered. In addition, it was possible to recover the expected minor species, namely 2-methyl-3,3-dimethylbutanal, Rh6(CO)16, and a recently identified cluster Rh4(σ-CO)12. The latter two species exist at ppm levels. The new BTEM algorithm shows that successful and detailed in situ spectroscopic system identification for catalytic studies is possible given no prior information.
Keywords :
DFT , Reaction Mechanism , Hydrogen transfer , SCR , vanadia , Ammonia , NOx
Journal title :
Journal of Catalysis
Serial Year :
2003
Journal title :
Journal of Catalysis
Record number :
1222558
Link To Document :
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