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Syntheses and Reactivity of Analogues of Grubbs’ Second Generation Metathesis Catalyst with Fluorous Phosphines: A New Phase‐Transfer Strategy for Catalyst Activation
Author(s) -
da Costa Rosenildo Corrêa,
Gladysz John A.
Publication year - 2007
Publication title -
advanced synthesis and catalysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.541
H-Index - 155
eISSN - 1615-4169
pISSN - 1615-4150
DOI - 10.1002/adsc.200600461
Subject(s) - chemistry , catalysis , reactivity (psychology) , metathesis , salt metathesis reaction , phase (matter) , organic chemistry , combinatorial chemistry , polymerization , medicine , alternative medicine , pathology , polymer
Reactions of the bis(pyridine) complex (H 2 IMes)(Py) 2 (Cl) 2 Ru(=CHPh), (H 2 IMes=1,3‐dimesityl‐4,5‐dihydroimidazol‐2‐ylidene) and the highly fluorophilic phosphines [R f n (CH 2 ) m ] 3 P [ 1 ; m / n = a , 2/6; b , 2/8; c , 2/10; d , 3/8; R f n =CF 3 (CF 2 ) n −1 ] give (H 2 IMes){[R f n (CH 2 ) m ] 3 P}(Cl) 2 Ru(=CHPh) ( 4a – d , 64–78 %), which are analogues of Grubbs’ second generation alkene metathesis catalyst. Complexes 4a , b are effective catalysts for conversions of 1,6‐dienes to cyclopentenes under monophasic and biphasic conditions in CH 2 Cl 2 and CH 2 Cl 2 /fluorous solvent mixtures. The latter generally exhibit rate accelerations, which are believed to arise from phase transfer of the dissociated fluorous phosphine, allowing the substrate to better compete for the fourteen valence‐electron intermediate. Only modest effects are observed when Grubbs’ second generation catalyst is similarly reacted. The most fluorophilic catalyst, 4c , can be recycled by extracting the reaction mixtures with perfluoro(methylcyclohexane).

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