Synthesis and molecular structures and oxidation catalysis of mixed alkyl,fluoroalkyl pyrazolylborate metal complexes

Citation
Sm. Gorun et al., Synthesis and molecular structures and oxidation catalysis of mixed alkyl,fluoroalkyl pyrazolylborate metal complexes, INORG CHIM, 297(1-2), 2000, pp. 383-388
Citations number
44
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
INORGANICA CHIMICA ACTA
ISSN journal
00201693 → ACNP
Volume
297
Issue
1-2
Year of publication
2000
Pages
383 - 388
Database
ISI
SICI code
0020-1693(200001)297:1-2<383:SAMSAO>2.0.ZU;2-1
Abstract
First row transition metal complexes of partly fluorinated tris- and bispyr azolylborate complexes are synthesized and structurally characterized. Both the red cobalt complex, [{eta(3)-HB(3-CF3-5-CH(3)pz)(3)}Co(eta(2)-NO3)(NCC H3)] (1a) and the colorless manganese analogue, [{eta(3)-HB(3-CF3-5-CH(3)pz )(3)} Mn(eta(2)-NO3)(NCCH3)] (1b), exhibit a N4O2 donor set which defines a distorted octahedral geometry. For the blue-purple complex Cu[eta(2)-H2B(3 -CF3-5-CH(3)pz)(2)](2) (2), the N-4 donor set defines a symmetry-imposed te tragonal geometry. The ligand(s) in 1 and 2 define relatively open and clos ed fluorine-lined cavities around their metal centers, respectively. The ca vity of 1a and 1b allows additional facial coordination by small ions and n eutral molecules such as NO3- and MeCN. In contrast, the metal in 2 is in a more saturated, quasi-octahedral environment, defined by two non-bonding a xial Cu ... H contacts and the N-4 donor set. Catalytic oxidation of cycloh exane using 1a and cumene hydroperoxide as oxygen donor yields a 1:1 mixtur e of cyclohexanol and cyclohexanone, and occurs 50% faster compared with th e non-fluorinated analogous complex. (C) 2000 Elsevier Science S.A. All rig hts reserved.