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0012475279
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note
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This procedure facilitates the kinetic study because it obviates the induction period for catalysts activation.
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29
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0012480534
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note
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3. This reaction is very slow (25 h at 322 K in THF), and we have observed sometimes the formation of this byproduct in other slow react ions in the absence of CuI (P. Espinet and Ana Gallego, unpublished results. See also ref 3). Due to this observation, the participation of organo-copper derivatives to a small extent cannot be fully excluded in this reaction.
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30
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0012474591
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note
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3, were detected due to oxidation by air, but these were formed in similar amounts in a control experiment in the absence of CuI.
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31
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0000986218
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note
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n species with different nuclearity: Reichle, W. T. Inorg. Chim. Acta 1971, 5, 325-332.
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Reichle, W.T.1
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32
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0001478777
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3] has been reported: Eller, P. G.; Kubas, G. J.; Ryan, R. R. Inorg. Chem. 1977, 10, 2454-462.
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Eller, P.G.1
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Ryan, R.R.3
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33
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0003625968
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section 53.3; Wilkinson, G., Gillard, R. D., McCleverty, J. A., Eds.: Pergamon Press: Oxford, U.K.
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Tetracoordinated Cu(I) complexes are common. See: Hattaway, B. J. Cooper, section 53.3. In Comprehensive Coordination Chemistry; Wilkinson, G., Gillard, R. D., McCleverty, J. A., Eds.: Pergamon Press: Oxford, U.K., 1987; Vol. 5.
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34
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0004026782
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note; Pregosin, P. S., Ed.; Elsevier: Amsterdam
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63Cu quadrupolar relaxation mechanism may also contribute to the fast relaxation of phosphorus nuclei, giving broad signals: Pregosin, P. S., Ed. Transition Metal Nuclear Magnetic Resonance; Elsevier: Amsterdam, 1991.
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(1991)
Transition Metal Nuclear Magnetic Resonance
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