-
19
-
-
34247513981
-
-
D. Morvan J.-F. Capon F. Gloaguen A. Le Goff M. Marchivie F. Michaud P. Schollhammer J. Talarmin J.-J. Yaouanc R. Pichon N. Kervarec Organometallics 2007 26 2042
-
(2007)
Organometallics
, vol.26
, pp. 2042
-
-
Morvan, D.1
Capon, J.-F.2
Gloaguen, F.3
Le Goff, A.4
Marchivie, M.5
Michaud, F.6
Schollhammer, P.7
Talarmin, J.8
Yaouanc, J.-J.9
Pichon, R.10
Kervarec, N.11
-
20
-
-
34248356031
-
-
S. Ezzaher J.-F. Capon F. Gloaguen F. Y. Pétillon P. Schollhammer J. Talarmin R. Pichon N. Kervarec Inorg. Chem. 2007 46 3426
-
(2007)
Inorg. Chem.
, vol.46
, pp. 3426
-
-
Ezzaher, S.1
Capon, J.-F.2
Gloaguen, F.3
Pétillon, F.Y.4
Schollhammer, P.5
Talarmin, J.6
Pichon, R.7
Kervarec, N.8
-
33
-
-
44349163891
-
-
VT NMR experiments did not reveal any dynamic exchange between the two forms observed in solution. They possibly could differ in the orientation of the R group attached to the nitrogen atom. A room temperature IR spectrum of the sample prepared for NMR studies revealed a ν(CO) pattern similar to that depicted above for the mixture of protonated isomers. This observation indicates that ν(CO) bands and NMR signals belong to the same N-protonated species
-
VT NMR experiments did not reveal any dynamic exchange between the two forms observed in solution. They possibly could differ in the orientation of the R group attached to the nitrogen atom. A room temperature IR spectrum of the sample prepared for NMR studies revealed a ν(CO) pattern similar to that depicted above for the mixture of protonated isomers. This observation indicates that ν(CO) bands and NMR signals belong to the same N-protonated species
-
-
-
-
38
-
-
44349159402
-
-
1/2 where n is the number of electrons involved in the catalytic process (n = 2), F is the Faraday constant, A is the electrode area, D is the diffusion coefficient of the catalyst, k is the rate constant of the catalytic process, and y is the order of the reaction with respect to the substrate (HA), see
-
J.-F. Capon S. Ezzaher F. Gloaguen F. Y. Pétillon P. Schollhammer J. Talarmin Chem.-Eur. J. 2008 14 1954
-
(2008)
Chem.-Eur. J.
, vol.14
, pp. 1954
-
-
Capon, J.-F.1
Ezzaher, S.2
Gloaguen, F.3
Pétillon, F.Y.4
Schollhammer, P.5
Talarmin, J.6
-
39
-
-
0003561662
-
-
Wiley, New York, pp 429-485 Programs used: SIR97:
-
A. J. Bard and L. R. Faulkner, Electrochemical Methods. Fundamentals and Applications, Wiley, New York, 1980, ch. 11, pp 429-485
-
(1980)
Electrochemical Methods. Fundamentals and Applications
-
-
Bard, A.J.1
Faulkner, L.R.2
-
40
-
-
0242560405
-
-
A. Altomare M. C. Burla M. Camalli G. Cascarano C. Giacovazzo A. Guagliardi A. G. G. Moliterni G. Polidori R. Spagna J. Appl. Crystallogr. 1999 32 115 119
-
(1999)
J. Appl. Crystallogr.
, vol.32
, pp. 115-119
-
-
Altomare, A.1
Burla, M.C.2
Camalli, M.3
Cascarano, G.4
Giacovazzo, C.5
Guagliardi, A.6
Moliterni, A.G.G.7
Polidori, G.8
Spagna, R.9
|