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In situ FTIR spectroscopic investigations on rhodium carbonyl complexes in the absence of phosphorus ligands under hydroformylation conditions.

Authors :
Leidecker, Benedict N.
Fuentes, Dilver Peña
Wei, Chunhong
Sawall, Mathias
Neymeyr, Klaus
Franke, Robert
Börner, Armin
Kubis, Christoph
Source :
New Journal of Chemistry; 11/21/2024, Vol. 48 Issue 43, p18365-18375, 11p
Publication Year :
2024

Abstract

In situ FTIR spectroscopy was combined with the peak group analysis (PGA) for investigations on the composition of 'unmodified' rhodium carbonyl complexes in the absence of phosphorus ligands at conditions relevant for alkene hydroformylation. As a precursor complex [Rh(acac)(CO)<subscript>2</subscript>] was selected since it is commonly used for rhodium catalyzed hydroformylations. At higher pressures of synthesis gas (CO/H<subscript>2</subscript>) and elevated temperatures, [Rh(acac)(CO)<subscript>2</subscript>] is decomposed to [Rh<subscript>4</subscript>(CO)<subscript>12</subscript>] and [Rh<subscript>6</subscript>(CO)<subscript>16</subscript>] as spectroscopically observable components. [Rh<subscript>4</subscript>(CO)<subscript>12</subscript>] represents an intermediate that readily reacts towards [Rh<subscript>6</subscript>(CO)<subscript>16</subscript>] at higher temperatures and lower partial pressures of carbon monoxide. The degradation of [Rh(acac)(CO)<subscript>2</subscript>] is hampered significantly at higher concentrations of acetylacetone. The involvement of a hydrido species in the reaction sequence from [Rh(acac)(CO)<subscript>2</subscript>] to polynuclear rhodium complexes under H<subscript>2</subscript>/CO is in aggreement with the detection of the infrared spectrum of [HRh(CO)<subscript>4</subscript>] and the considerable decrease of the decomposition rate in the presence of pure CO and D<subscript>2</subscript>/CO. With ethene as the alkene substrate, acyl complexes of the type [CH<subscript>3</subscript>CH<subscript>2</subscript>C(O)Rh(CO)<subscript>3</subscript>(π-C<subscript>2</subscript>H<subscript>4</subscript>)] and [CH<subscript>3</subscript>CH<subscript>2</subscript>C(O)Rh(CO)<subscript>4</subscript>] have been observed, whereas only the tetra carbonyl complex [(CH<subscript>3</subscript>)<subscript>3</subscript>CCH<subscript>2</subscript>CH<subscript>2</subscript>C(O)Rh(CO)<subscript>4</subscript>] was detected for neohexene. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
11440546
Volume :
48
Issue :
43
Database :
Complementary Index
Journal :
New Journal of Chemistry
Publication Type :
Academic Journal
Accession number :
180648952
Full Text :
https://doi.org/10.1039/d4nj02288b