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Unexpected reaction of the unsaturated cluster host and catalyst [Pd3(mu3-CO)(dppm)3]2+ with the hydroxide ion: spectroscopic and kinetic evidence of an inner-sphere mechanism.
Chemistry. 2006 Nov 06; 12(32):8386-95.C

Abstract

The title cluster, [Pd(3)(mu(3)-CO)(dppm)(3)](2+) (dppm=bis(diphenylphosphino)methane), reacts with one equivalent of hydroxide anions (OH(-)), from tetrabutylammonium hydroxide (Bu(4)NOH), to give the paramagnetic [Pd(3)(mu(3)-CO)(dppm)(3)](+) species. Reaction with another equivalent of OH(-) leads to the zero-valent compound [Pd(3)(mu(3)-CO)(dppm)(3)](0). From electron paramagnetic resonance analysis of the reaction medium using the spin-trap agent 5,5-dimethyl-1-pyrroline-N-oxide (DMPO), the 2-tetrahydrofuryl or methyl radicals, deriving from the tetrahydrofuran (THF) or dimethyl sulfoxide (DMSO) solvent, respectively, were detected. For both [Pd(3)(mu(3)-CO)(dppm)(3)](2+) and [Pd(3)(mu(3)-CO)(dppm)(3)](+), the mechanism involves, in a first equilibrated step, the formation of a hydroxide adduct, [Pd(3)(mu(3)-CO)(dppm)(3)(OH)]((n-1)+) (n=1, 2), which reacts irreversibly with the solvent. The kinetics were resolved by means of stopped-flow experiments and are consistent with the proposed mechanism. In the presence of an excess of Bu(4)NOH, an electrocatalytic process was observed with modest turnover numbers (7-8). The hydroxide adducts [Pd(3)(mu(3)-CO)(dppm)(3)(OH)]((n-1)+) (n=1, 2), which bear important similarities to the well-known corresponding halide adducts [Pd(3)(mu(3)-CO)(dppm)(3)(mu(3)-X)](n) (X=Cl, Br, I), have been studied by using density functional theory (DFT). Although the optimised geometry for the cluster in its +2 and 0 oxidation states (i.e., cation and anion clusters, respectively) is the anticipated mu(3)-OH form, the paramagnetic species, [Pd(3)(mu(3)-CO)(dppm)(3)(OH)](0), shows a mu(2)-OH form; this suggests an important difference in electronic structure between these three species.

Authors+Show Affiliations

Université de Bourgogne, Laboratoire de Synthèse et Electrosynthèse Organométalliques, CNRS UMR 5188, Faculté des Sciences Mirande, 9 Avenue Alain Savary, 21000 Dijon, France.No affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article

Language

eng

PubMed ID

16897803

Citation

Cugnet, Cyril, et al. "Unexpected Reaction of the Unsaturated Cluster Host and Catalyst [Pd3(mu3-CO)(dppm)3]2+ With the Hydroxide Ion: Spectroscopic and Kinetic Evidence of an Inner-sphere Mechanism." Chemistry (Weinheim an Der Bergstrasse, Germany), vol. 12, no. 32, 2006, pp. 8386-95.
Cugnet C, Lucas D, Lemaître F, et al. Unexpected reaction of the unsaturated cluster host and catalyst [Pd3(mu3-CO)(dppm)3]2+ with the hydroxide ion: spectroscopic and kinetic evidence of an inner-sphere mechanism. Chemistry. 2006;12(32):8386-95.
Cugnet, C., Lucas, D., Lemaître, F., Collange, E., Soldera, A., Mugnier, Y., & Harvey, P. D. (2006). Unexpected reaction of the unsaturated cluster host and catalyst [Pd3(mu3-CO)(dppm)3]2+ with the hydroxide ion: spectroscopic and kinetic evidence of an inner-sphere mechanism. Chemistry (Weinheim an Der Bergstrasse, Germany), 12(32), 8386-95.
Cugnet C, et al. Unexpected Reaction of the Unsaturated Cluster Host and Catalyst [Pd3(mu3-CO)(dppm)3]2+ With the Hydroxide Ion: Spectroscopic and Kinetic Evidence of an Inner-sphere Mechanism. Chemistry. 2006 Nov 6;12(32):8386-95. PubMed PMID: 16897803.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Unexpected reaction of the unsaturated cluster host and catalyst [Pd3(mu3-CO)(dppm)3]2+ with the hydroxide ion: spectroscopic and kinetic evidence of an inner-sphere mechanism. AU - Cugnet,Cyril, AU - Lucas,Dominique, AU - Lemaître,Frédéric, AU - Collange,Edmond, AU - Soldera,Armand, AU - Mugnier,Yves, AU - Harvey,Pierre D, PY - 2006/8/10/pubmed PY - 2006/8/10/medline PY - 2006/8/10/entrez SP - 8386 EP - 95 JF - Chemistry (Weinheim an der Bergstrasse, Germany) JO - Chemistry VL - 12 IS - 32 N2 - The title cluster, [Pd(3)(mu(3)-CO)(dppm)(3)](2+) (dppm=bis(diphenylphosphino)methane), reacts with one equivalent of hydroxide anions (OH(-)), from tetrabutylammonium hydroxide (Bu(4)NOH), to give the paramagnetic [Pd(3)(mu(3)-CO)(dppm)(3)](+) species. Reaction with another equivalent of OH(-) leads to the zero-valent compound [Pd(3)(mu(3)-CO)(dppm)(3)](0). From electron paramagnetic resonance analysis of the reaction medium using the spin-trap agent 5,5-dimethyl-1-pyrroline-N-oxide (DMPO), the 2-tetrahydrofuryl or methyl radicals, deriving from the tetrahydrofuran (THF) or dimethyl sulfoxide (DMSO) solvent, respectively, were detected. For both [Pd(3)(mu(3)-CO)(dppm)(3)](2+) and [Pd(3)(mu(3)-CO)(dppm)(3)](+), the mechanism involves, in a first equilibrated step, the formation of a hydroxide adduct, [Pd(3)(mu(3)-CO)(dppm)(3)(OH)]((n-1)+) (n=1, 2), which reacts irreversibly with the solvent. The kinetics were resolved by means of stopped-flow experiments and are consistent with the proposed mechanism. In the presence of an excess of Bu(4)NOH, an electrocatalytic process was observed with modest turnover numbers (7-8). The hydroxide adducts [Pd(3)(mu(3)-CO)(dppm)(3)(OH)]((n-1)+) (n=1, 2), which bear important similarities to the well-known corresponding halide adducts [Pd(3)(mu(3)-CO)(dppm)(3)(mu(3)-X)](n) (X=Cl, Br, I), have been studied by using density functional theory (DFT). Although the optimised geometry for the cluster in its +2 and 0 oxidation states (i.e., cation and anion clusters, respectively) is the anticipated mu(3)-OH form, the paramagnetic species, [Pd(3)(mu(3)-CO)(dppm)(3)(OH)](0), shows a mu(2)-OH form; this suggests an important difference in electronic structure between these three species. SN - 0947-6539 UR - https://www.unboundmedicine.com/medline/citation/16897803/Unexpected_reaction_of_the_unsaturated_cluster_host_and_catalyst_[Pd3_mu3_CO__dppm_3]2+_with_the_hydroxide_ion:_spectroscopic_and_kinetic_evidence_of_an_inner_sphere_mechanism_ L2 - https://doi.org/10.1002/chem.200600395 DB - PRIME DP - Unbound Medicine ER -
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