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Iron complexes phosphites

CsHuN, Ethanamine, A-ethyl-A-methyl-tungsten complex, 26 40, 42 C6HF5, Benzene, pentafluoro-gold complexes, 26 86-90 C H4I2, Benzene, 1,2-diido-iridium complex, 26 125 CJT, Phenyl platinum complex, 26 136 C,H,N, Pyridine osmium complex, 26 291 OHtS, Benzenethiol osmium complex, 26 304 QH7P, Phosphine, phenyl-cobalt-iron complex, 26 353 QH 1-Butyne, 3,3-dimethyl-mercury-molybdenum-ruthenium complex, 26 329-335 C6H 4P, Phosphine, triethyl-platinum complex, 26 126 platinum complexes, 26 135-140 CsHisPO, Triethyl phosphite iron complex, 26 61... [Pg.414]

C1bHi5As, Arsine, triphenyl-iron complex, 26 61 C H 5OjP, Triphenyl phosphite ruthenium complex, 26 178 CuHijP, Phosphine, triphenyl-cobalt complex, 26 190—197 cobalt-gold-ruthenium, 26 327 gold complex, 26 90, 325, 326 gold-manganese complex, 26 229 iridium complexes, 26 117-120, 122-125, 201, 202... [Pg.416]

OPC,Hg, Trimethyl phosphite iron iron complex, 26 61 OPCfiH , Triethyl phosphite iron complex, 26 61 OPCmHis, Triphenyl phosphite iron complex, 26 61... [Pg.429]

Cycloheptadienyl-iron complexes. Cyclohcptadienyl-Fe(CO), reacts with nucleophiles to give mixtures of products, usually in low yield. However, complexes 1, in which one CO ligand is replaced by triphenylphosphinc or triphenyl phosphite, react with most nucleophiles at the dienyl terminus and in high yield. Hydride abstraction followed by reaction with a second nucleophile results in a regio- and stereocontrol led substitution at the opposite terminus and again anti to the metal. Decomplexation affords ri.v-5,7-disub-stituted cycloheptadienes. [Pg.267]

OjSCjH4, Acetic acid, 2-mercaptocobalt complex, 21 21 03CH2, Carbonic acid platinum chain complex, 21 153, 154 cobalt complex, 21 120 OjPCjH, Trimethyl phosphite iron complex, 21 93... [Pg.274]

C5H15O3P, Triethyl phosphite, iron complex, 26 61, 28 171 nickel complexes, 28 101, 104-106 CjHijP, Phosphine, triethyl-, gold-osmium complexes, 27 209, 211 gold-platinum complex, 27 218 nickel complex, 28 101 platinum complexes, 26 126, 135-140, 27 32, 34,28 27, 120, 122, 133, 29 191 C5H16N4, l,2-Ethanediamine,AfJVJV Af -tetramethyl-, lithium complex, 26 148 CjH,6P2, Phosphine, l,2-ethanediylbis(di-methyl-, nickel complex, 28 101 CjHijSi, Silane, triethyl-, ruthenium complex, 26 269... [Pg.350]


See other pages where Iron complexes phosphites is mentioned: [Pg.89]    [Pg.414]    [Pg.416]    [Pg.436]    [Pg.203]    [Pg.196]    [Pg.299]    [Pg.93]    [Pg.146]    [Pg.1234]    [Pg.2036]    [Pg.2043]    [Pg.2044]    [Pg.2058]    [Pg.2574]    [Pg.113]    [Pg.282]    [Pg.377]    [Pg.378]    [Pg.380]    [Pg.403]    [Pg.403]    [Pg.403]    [Pg.416]    [Pg.416]    [Pg.416]    [Pg.318]    [Pg.318]    [Pg.213]    [Pg.250]    [Pg.1983]    [Pg.2035]    [Pg.2042]    [Pg.2043]    [Pg.2057]    [Pg.2573]    [Pg.1234]    [Pg.352]   
See also in sourсe #XX -- [ Pg.1197 ]

See also in sourсe #XX -- [ Pg.4 , Pg.1197 ]




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Triethyl phosphite, iron complexes

Trimethyl phosphite iron complex

Triphenyl phosphite, cobalt complex iron complexes

Triphenyl phosphite, iron complex

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