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1.
J Am Chem Soc ; 133(6): 1832-48, 2011 Feb 16.
Artículo en Inglés | MEDLINE | ID: mdl-21247150

RESUMEN

This Article describes the preparation and isolation of novel octahedral CH(2)-bridged bis-(N-heterocyclic carbene)palladium(IV) tetrachlorides of the general formula LPd(IV)Cl(4) [L = (NHC)CH(2)(NHC)] from LPd(II)Cl(2) and Cl(2). In intermolecular, nonchelation-controlled transformations LPd(IV)Cl(4) reacted with alkenes and alkynes to 1,2-dichlorination adducts. Aromatic, benzylic, and aliphatic C-H bonds were converted into C-Cl bonds. Detailed mechanistic investigations in the dichlorinations of alkenes were conducted on the 18VE Pd(IV) complex. Positive solvent effects as well as kinetic measurements probing the impact of cyclohexene and chloride concentrations on the rate of alkene chlorination support a Pd(IV)-Cl ionization in the first step. Product stereochemistry and product distributions from various alkenes also support Cl(+)-transfer from the pentacoordinated Pd(IV)-intermediate LPd(IV)Cl(3)(+) to olefins. 1-Hexene/3-hexene competition experiments rule out both the formation of π-complexes along the reaction coordinate as well as in situ generated Cl(2) from a reductive elimination process. Instead, a ligand-mediated direct Cl(+)-transfer from LPd(IV)Cl(3)(+) to the π-system is likely to occur. Similarly, C-H bond chlorinations proceed via an electrophilic process with in situ formed LPd(IV)Cl(3)(+). The presence of a large excess of added Cl(-) slows cyclohexene chlorination while the presence of stoichiometric amounts of chloride accelerates both Pd(IV)-Cl ionization and Cl(+)-transfer from LPd(IV)Cl(3)(+). (1)H NMR titrations, T1 relaxation time measurements, binding isotherms, and Job plot analysis point to the formation of a trifurcated Cl(-)···H-C bond in the NHC-ligand periphery as a supramolecular cause for the accelerated chemical events involving the metal center.


Asunto(s)
Alquenos/química , Técnicas de Química Sintética/métodos , Halogenación , Compuestos Heterocíclicos/química , Compuestos Organometálicos/química , Compuestos Organometálicos/síntesis química , Paladio/química , Enlace de Hidrógeno , Cinética , Modelos Moleculares , Conformación Molecular , Oxidación-Reducción , Solventes/química
2.
Inorg Chem ; 37(3): 503-509, 1998 Feb 09.
Artículo en Inglés | MEDLINE | ID: mdl-11670301

RESUMEN

Two regioselective, high-yield routes to nido-6-alkyldecaborane(14)s via one-pot syntheses are reported. Alkyllithium reagents add to salts of nido-B(10)H(13)(-) to form arachno-6-R-B(10)H(13)(2)(-), which may be protonated using HCl/Et(2)O, first to the corresponding arachno-6-R-B(10)H(14)(-) anion and then, with H(2) loss, to nido-6-R-B(10)H(13). Alternately, olefin hydroboration of arachno-6,9-(SMe(2))(2)-B(10)H(12) produces nido-6-R-8-(SMe(2))-B(10)H(11), which may be reduced, using Superhydrid, to nido-6-R-B(10)H(12)(-), and then protonated with HCl/Et(2)O to nido-6-R-B(10)H(13). X-ray diffraction studies of the following intermediates and products are presented: nido-8-(SMe(2))-B(10)H(12), nido-6-Thx-8-(SMe(2))-B(10)H(11), and nido-6-Thx-B(10)H(13).

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