Picosecond and nanosecond time-resolved resonance Raman spectra of the intramolecular charge transfer (ICT) and triplet state of DMABN-d 4 have been obtained over the frequency range from 650 to 2250cm -1. The spectra and the isotopic shifts observed on going from normal DMABN to the ring deuterated analogue are interpreted with the aid of DFT vibrational analysis of ground state spectra and comparisons made with closely related compounds. The data confirm our previous results but the isotopic shifts induced by the ring deuteration provide additional evidence clarifying the planar structure of the triplet state and indicating full localisation of negative charge on the cyano group. © 2001 Elsevier Science B.V.link_to_subscribed_fulltex
The nonradiative deactivation processes of intramolecular charge transfer (ICT) and intersystem cros...
4-(Dimethylamino)benzonitrile (DMABN) has been one of the most studied photoinduced charge-transfer...
Work supported by NSF (CHE-0618740 and -0911117).Author Institution: Department of Chemistry, Univer...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotopomer DMABN...
IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotopomer DMABN...
Abstract: IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotop...
Picosecond time-resolved Raman spectra of the intramolecular charge transfer state of DMABN and DMAB...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
Structures of the locally excited (LE) states of 4-aminobenzonitrile (ABN) and 4-dimethylaminobenzon...
The nonradiative deactivation processes of intramolecular charge transfer (ICT) and intersystem cros...
4-(Dimethylamino)benzonitrile (DMABN) has been one of the most studied photoinduced charge-transfer...
Work supported by NSF (CHE-0618740 and -0911117).Author Institution: Department of Chemistry, Univer...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
Picosecond time-resolved resonance Raman spectra of the A (intramolecular charge transfer, ICT) stat...
IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotopomer DMABN...
IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotopomer DMABN...
Abstract: IR and Raman spectra of DMABN (4-dimethylaminobenzonitrile) and its ring deuterated isotop...
Picosecond time-resolved Raman spectra of the intramolecular charge transfer state of DMABN and DMAB...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
A wide range of time-resolved spectroscopic methods (time-resolved infrared (TRIR), picosecond Kerr ...
Structures of the locally excited (LE) states of 4-aminobenzonitrile (ABN) and 4-dimethylaminobenzon...
The nonradiative deactivation processes of intramolecular charge transfer (ICT) and intersystem cros...
4-(Dimethylamino)benzonitrile (DMABN) has been one of the most studied photoinduced charge-transfer...
Work supported by NSF (CHE-0618740 and -0911117).Author Institution: Department of Chemistry, Univer...