Molybdenum-mercury bond. NMR (199Hg, 31P, 1H) and IR study on[(C5H5)(CO)2LMoHgZ] (LP(4-X-C6H4)3 (XF, Cl, Me, OMe), P(CH2CH3)3, P(CH2CH2CN)3; ZCl, I, (C5H5)(CO)2LMo) complexes
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference33 articles.
1. Application de la RMN du 95Mo a l'etude d'organo-complexes carbonyles du molybdene
2. The molybdenum-mercury bond. A multinuclear (1H, 13C, 31P, 95Mo and 199Hg) n.m.r. study of (η5-C5H5)(CO)2LMoHgX [L = CO, P(OMe)3 and PPh3; X = Cl, Br, I, S2COEt, S2P(OEt)2, S2CNEt2 and Mo(CO)3(η5-C5H5)] complexes and the crystal and molecular structure of (η5-C5H5)(CO)3MoHgS2CNEt2
3. Transition metal-main group metal bond. VI. 199Hg NMR and 57Fe mössbauer study of (η5-C5H5)(CO)2FeHgX [X = Cl,Br,I,S2COC2H5, S2CN(C2H5)2, S2P(OC2H5)2 and Fe(CO)2(η5-C5H5)]complexes.
4. Cyclopentadienyl complexes with transition metal – main group metal bonds. VII. 207Pb and 95Mo nuclear magnetic resonance studies on molybdenum and tungsten complexes [(η5-C5H5)(CO)3M]nPbR4−n (n = 1, R = Me, Et, Ph; n = 2, R = Ph)
5. 95Mo and 199Hg NMR studies on complexes containing molybdenum-mercury bonds and substituted-cyclopentadienyl ligands: [(C5H5-nRn)(CO)3Mo]xHgX2-x (R = Me, n = 0, 1, 4, 5; R = Ph, n = 4; X = Cl, Br, I; x = 1, 2)
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