Photoredox reactions of oxomolybdenum(V) with phosphines

Citation
Ra. Isovitsch et al., Photoredox reactions of oxomolybdenum(V) with phosphines, POLYHEDRON, 19(12), 2000, pp. 1437-1446
Citations number
55
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
POLYHEDRON
ISSN journal
02775387 → ACNP
Volume
19
Issue
12
Year of publication
2000
Pages
1437 - 1446
Database
ISI
SICI code
0277-5387(20000630)19:12<1437:PROOWP>2.0.ZU;2-D
Abstract
The fluorescent molybdenum(V)-oxo complex MoOCl4(H2O)(-), and oxomolybdenum (V)-phosphine complexes derived from it, undergo thermal and photochemical reactions in acetonitrile with the series of phosphines PEt3, PEt2Ph, PEtPh 2, and PPh3. PEt3 reacts spontaneously to form several products: crystallin e (PPh4)[(MoCl4)-Cl-III(PEt3)(2)] and (PPh4)(2)[(MoOCl5)-O-V]. 2CH(2)Cl(2); and a maroon oil that contains OPEt3, (MoOCl2)-O-IV(PEt3)(2) and (MoCl4)-C l-IV(PEt3)(2). The Mo(III) and OPEt3 products show that oxygen atom transfe r has occurred. PEt2Ph and PEtPh2 show no significant redox activity with o xomolybdenum(V) in the dark, but irradiation (lambda > 320 nm, CH3CN soluti on) leads to reduction of Mo(V) and production of the corresponding phosphi ne oxides. The molybdenum(III) product, cis-mer-MoCl3(OPEt2Ph)(2)(PEt2Ph), was isolated from the PEt2Ph experiment. PPh3 is not oxidized under these c onditions; instead, spectral evidence suggests that photoinduced ligand sub stitution occurs, producing MoOCl3(PPh3)(2). Selective irradiation of the l onger-wavelength Mo(V) absorption bands leads to similar photoredox reactio ns, but much more slowly. X-ray analyses of two reaction products, (PPh4)(2 )[(MoOCl5)-O-V]. 2CH(2)Cl(2) and cis-mer-(MoCl3)-Cl-III(OPEt2Ph)(2)(PEt2Ph) , an reported. (C) 2000 Elsevier Science Ltd. All rights reserved.