The last sentence of the second paragraph on page 125 (right column) is incorrect and misleading. It should read: Consequently, also these experimental results are at variance with the assumed electron localization but are explainable by a delocalized model with one chromophore exhibiting two low-l
Zeeman splittings of the two lowest excited states of [Ru(bpy)3](PF6)2
β Scribed by Dieter Braun; Erich Gallhuber; Hartmut Yersin
- Publisher
- Elsevier Science
- Year
- 1990
- Tongue
- English
- Weight
- 483 KB
- Volume
- 171
- Category
- Article
- ISSN
- 0009-2614
No coin nor oath required. For personal study only.
β¦ Synopsis
For [Ru(bpy),] (PF,),, the splittings of the two lowest excited electronic states could be measured under magnetic fields (Zeeman effect ). The splittings of both states increase with the magnetic-field strength to 3 k 0.5 cm-' at B= 6 T. It is concluded that at B equal zero, the parent terms of these two states cannot be classified as originating from a situation in which one electron is localized on one ligand.
π SIMILAR VOLUMES
The positions and intensities of the electronic origins in [Zn(bpy),] ( C104)\*: Ru( II) are strongly dependent on the orientation of an applied magnetic field within the metal-ligand plane. Spectra can be calculated by a mode1 in which the lowest-energy charge-transfer excitations involve an indivi
Optical detection of magnetic resonance (ODMR) and time-resolved EPR (TREPR) techniques were used to study the properties of the lowest excited triplet state of [ Ru(bpy)3] z l in several solvents at liquid-helium teinperatures. Surprising- ly small zero-field splittings (zfs =O.l cm-' ) were observ
The excited-state absorption of Ru( bpy)S+ (RBY) in the range 240 to 2200 nm is reported, extending the range and improving the resolution of previous measurements. The excitation power dependence of the excited-state populations are quantified and absorption measurements made in Hz0 and DZO soluti