The C-13 CP/MAS NMR spectra of various nitroanilines have been measured, and the origin of the differential broadening observed between the signals split by the residual dipolar interaction with N-14 has been clarified experimentally. The dipolar interaction between H-1 and N-14 is responsible for the C-13 differential broadening, while the direct dipolar interaction with H-1 is neglected. A molecular motion can eliminate the differential broadening, which is presumably the 180 degrees flip of the NH2 group around the C-N axis. Therefore, the differential broadening is highly correlated to the molecular motion and the hydrogen bonding. (C) 1999 Elsevier Science B.V. All rights reserved.
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UNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINA
OLIVIERI, AC
FRYDMAN, L
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UNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINA
FRYDMAN, L
GRASSELLI, M
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UNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINA
GRASSELLI, M
DIAZ, LE
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UNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINAUNIV BUENOS AIRES,DEPT FARM & BIOQUIM,JUNIN 956,RA-1113 BUENOS AIRES,ARGENTINA