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Magafa, V.1
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8
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0141628533
-
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Search of the Cambridge Structural Database revealed 17 structures of copper(II) amino acidato complex in the trans form; for examples, see: (a) Deschamps, P.; Zerrouk, N.; Nicolis, I.; Martens, T.; Curis, E.; Charlot, M.-F.; Girerd, J. J.; Prange, T.; Benazeth, S.; Chaumeil, J. C.; Tomas, A. Inorg. Chim. Acta 2003, 353, 22.
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Deschamps, P.1
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Martens, T.4
Curis, E.5
Charlot, M.-F.6
Girerd, J.J.7
Prange, T.8
Benazeth, S.9
Chaumeil, J.C.10
Tomas, A.11
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9
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0036840009
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(b) Schveigkardt, J. M.; Rizzi, A. C.; Piro, O. E.; Castellano, E. E.; de Santana, R. C.; Calvo, R.; Brondino, C. D. Eur. J. Inorg. Chem. 2002, 2913.
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Schveigkardt, J.M.1
Rizzi, A.C.2
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Castellano, E.E.4
De Santana, R.C.5
Calvo, R.6
Brondino, C.D.7
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10
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33746548772
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D'yakov, I. A.; Donu, S. V.; Chapurina, L. F. Kristallografiya 1998, 43, 656.
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Kristallografiya
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D'yakov, I.A.1
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Chapurina, L.F.3
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11
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33746551458
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Deljac, A.; Kaitner, B.; Kirin, S. I.; Meštroviæ, E. Acta Crystallogr. C 1993, 49, 1354.
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Acta Crystallogr. C
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Deljac, A.1
Kaitner, B.2
Kirin, S.I.3
Meštroviæ, E.4
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12
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-
0002487843
-
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Search of the Cambridge Structural Database revealed six structures of copper(II) amino acidato complex in the cis form; for examples, see: (a) Moussa, S. M.; Fenton, R. R.; Kennedy, B. J.; Piltz, R. O. Inorg. Chim. Acta 1999, 288, 29.
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Moussa, S.M.1
Fenton, R.R.2
Kennedy, B.J.3
Piltz, R.O.4
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13
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0010672901
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(b) Delbaere, L. T. J.; Kamenar, B.; Prout, K. Acta Crystallogr. B 1975, 31, 862.
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Delbaere, L.T.J.1
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Prout, K.3
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14
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37049124548
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Gillard, R. D.; Mason, R.; Payne, N. C.; Robertson, G. B. J. Chem. Soc. A 1969, 1864.
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Gillard, R.D.1
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Robertson, G.B.4
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15
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17844376223
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(a) MacKinlay, R. M.; Cave, G. W. V.; Atwood, J. L. Proc. Natl. Acad. Sci. U.S.A. 2005, 102, 5944.
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MacKinlay, R.M.1
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18
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37049102366
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(a) Delf, B. W.; Gillard, R. D.; O'Brien, P. J. Chem. Soc., Dalton. Trans. 1979, 8, 1301.
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Delf, B.W.1
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19
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33746494799
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(b) Bernard, M. A.; Bois, N.; Daireaux, M. Thermochim. Acta 1976, 16, 283.
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Bernard, M.A.1
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Daireaux, M.3
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20
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33746577747
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Ablov, A. V.; D'yakon, I. A.; Ivanova, V. Ya; Proskina, N. N.; Chapurina, L. F. Zh. Neorgan. Khim. 1965, 10, 628.
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Ablov, A.V.1
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Proskina, N.N.4
Chapurina, L.F.5
-
22
-
-
33244477385
-
-
During the revision of the manuscript, a structure has been reported of a monomeric coppr(II) complex involving 2,2′-dipyridyl and acc as ligands: Ghattas, W.; Gaudin, C.; Giorgi, M.; Rockenbauer, A.; Simaan, A. J.; Réglier, M. Chem. Commun. 2006, 1027.
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Ghattas, W.1
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Rockenbauer, A.4
Simaan, A.J.5
Réglier, M.6
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23
-
-
0034647443
-
-
Most hydrated copper(II) amino acidato complexes are monomeric, but apical Cu⋯O bonding can lead to polymerization, see: (a) Rizzi, A. C.; Piro, O. E.; Castellano, E. E.; Nascimento, O. R.; Brondino, C. D. Inorg. Chim. Acta 2000, 305, 19.
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Rizzi, A.C.1
Piro, O.E.2
Castellano, E.E.3
Nascimento, O.R.4
Brondino, C.D.5
-
24
-
-
0001270357
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(b) Calvo, R.; Levstein, P. R.; Castellano, E. E.; Fabiane, S. M.; Piro, O. E.; Oseroff, S. B. Inorg. Chem. 1991, 30, 216.
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Calvo, R.1
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Oseroff, S.B.6
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25
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37049083303
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Hitchman, M. A.; Kwan, L.; Engelhardt, L. M.; White, A. H. J. Chem. Soc., Dalton Trans. 1987, 457.
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Hitchman, M.A.1
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White, A.H.4
-
26
-
-
33746494371
-
-
note
-
max = 629 nm.
-
-
-
-
27
-
-
33746520437
-
-
note
-
3, Z = 4, R = 0.039 for 5079 reflections with I ≥ 2σ(I). CCDC reference code: 288147.
-
-
-
-
28
-
-
0037148845
-
-
Thallapally, P. K.; Katz, A. K.; Carrell, H. L.; Desiraju, G. R. Chem. Commun. 2002, 344.
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Chem. Commun.
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Thallapally, P.K.1
Katz, A.K.2
Carrell, H.L.3
Desiraju, G.R.4
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29
-
-
0039703413
-
-
Representative examples of copper(II) amino acidato polymeric structures: (a) Stephens, F. S.; Vagg, R. S.; Williams, P. A. Acta Crystallogr. B 1975, 31, 841.
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(1975)
Acta Crystallogr. B
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, pp. 841
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Stephens, F.S.1
Vagg, R.S.2
Williams, P.A.3
-
30
-
-
33845559349
-
-
(b) Fawcett, T. G.; Ushay, M.; Rose, J. P.; Lalancette, R. A.; Potenza, J. A.; Schugar, H. J. Inorg. Chem. 1979, 18, 327.
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Fawcett, T.G.1
Ushay, M.2
Rose, J.P.3
Lalancette, R.A.4
Potenza, J.A.5
Schugar, H.J.6
-
33
-
-
33746534086
-
-
see ref 12
-
3) of 170.6 (Cu1) and 167.0 (Cu3) on the side of the coordination plane lacking the apical ligand, 103.5 (Cu1) and 104.1 (Cu3) on the opposite side of the plane and 129.8 and 125.9 for Cu2. The volumes of apically coordinated ligands were not included in the calculations. For more details, see ref 12.
-
-
-
-
34
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2442714902
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(a) Ray, M. S.; Ghosh, A.; Das, A.; Drew, M. G. B.; Ribas-Arino, J.; Novoa, J.; Ribas, J. Chem. Commun. 2004, 1102.
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Ray, M.S.1
Ghosh, A.2
Das, A.3
Drew, M.G.B.4
Ribas-Arino, J.5
Novoa, J.6
Ribas, J.7
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35
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0034740246
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(b) Hu, S.; Du, W.; Dai, J.; Wu, L.; Cui, C.; Fu, Z.; Wu, X. J. Chem. Soc., Dalton Trans. 2001, 2963.
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Hu, S.1
Du, W.2
Dai, J.3
Wu, L.4
Cui, C.5
Fu, Z.6
Wu, X.7
-
37
-
-
1342302938
-
-
For examples of discrete structures based on coordination bonds, see: (a) Papaefstathiou, G. S.; Hamilton, T. D.; Friščić, T.; MacGillivray, L. R. Chem. Commun. 2004, 270.
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Chem. Commun.
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Papaefstathiou, G.S.1
Hamilton, T.D.2
Friščić, T.3
MacGillivray, L.R.4
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38
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0037010016
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(b) Hamilton, T. D.; Papaefstathiou, G. S.; MacGillivray, L. R. J. Am. Chem. Soc. 2002, 124, 11606.
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Hamilton, T.D.1
Papaefstathiou, G.S.2
MacGillivray, L.R.3
-
40
-
-
33746475017
-
-
note
-
Preliminary thermogravimetric measurements reveal that 1 loses water in a broad step that starts at 75°C and extends well beyond 180°C, suggesting that a possible cis-to-trans isomerization would be connected by a loss of water molecules.
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