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Grignard complexes, chemical shifts

Chiral Metal Atoms in Optically Active Organo-Transition-Metal Compounds, 18, 151 13C NMR Chemical Shifts and Coupling Constants of Organometallic Compounds, 12, 135 Compounds Derived from Alkynes and Carbonyl Complexes of Cobalt, 12, 323 Conjugate Addition of Grignard Reagents to Aromatic Systems, I, 221 Coordination of Unsaturated Molecules to Transition Metals, 14, 33 Cyclobutadiene Metal Complexes, 4, 95 Cyclopentadienyl Metal Compounds, 2, 365... [Pg.323]

A second group of complexes that have received detailed attention are the (i73-allyl)nickel(i75-cyclopentadienyl) complexes, which may be prepared by reacting nickelocene with an allyl-Grignard reagent (69). Data for typical examples are shown in Table IX. In this particular case, a sufficiently large number of complexes have been studied that a series of chemical shift increments can be extracted from the data (shown in Table X) and have been used with considerable success in assigning structures to ij3-allyl nickel complexes of unknown structure. [Pg.280]

Table 5 Chemical Shifts of Alkyl Grignard Complexes ... Table 5 Chemical Shifts of Alkyl Grignard Complexes ...
The NMR studies of Group IIA compounds center on investigations of Grignard complexes. Carbon-13 chemical shifts for phenyl and alkyl Grig-nard complexes are given in Tables IV and V, respectively. [Pg.306]


See other pages where Grignard complexes, chemical shifts is mentioned: [Pg.45]    [Pg.17]    [Pg.457]    [Pg.345]    [Pg.307]    [Pg.307]    [Pg.308]    [Pg.3]    [Pg.146]    [Pg.161]   
See also in sourсe #XX -- [ Pg.306 , Pg.307 ]




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