PHOTOINDUCED DECARBONYLATION OF RUTHENIUM(II) CARBONYL OCTAETHYLPORPHYRIN IN ACETONITRILE - STUDIES ON THE ORIGIN OF THE EXCITATION WAVELENGTH DEPENDENCE

被引:24
作者
HOSHINO, M
KASHIWAGI, Y
机构
[1] Solar Energy Research Group, Institute of Physical and Chemical Research, Wako
关键词
D O I
10.1021/j100365a031
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Photodecarbonylation of ruthenium(II) carbonyl octaethylporphyrin, CORuIIOEP, in acetonitrile has been investigated by steady-light and laser flash photolysis techniques. The quantum yields, Φ, for photodecarbonylation in degassed solutions are markedly dependent on excitation wavelengths, λ, Φ = 0.01 ± 0.02 (550 > λ > 350 nm), and Φ gradually increases up to 0.08 ± 0.01 on going from 350 to 260 nm at 298 K. With the use of 1,4-benzoquinone as a quencher, photodecarbonylation upon excitation of the Q band has been demonstrated to occur solely via the triplet mechanism, i.e., the triplet CORuIIOEP is involved as a reactive excited state. In order to elucidate the wavelength dependence observed for the yields for photodecarbonylation, we have measured the quantum yields, phosphorescence intensities, and the decay rate constants of the triplet CORuIIOEP in the temperature range 273-350 K. On the basis of these results, a marked increase in the quantum yields observed in the excitation wavelength region λ < 350 nm is interpreted on the assumption that the excited state of CORuIIOEP produced immediately upon excitation at λ < 350 nm loses the excitation energy through elongation of the distance between CO and the central ruthenium atom to yield a loosely bound complex, CO⋯RuIIOEP, as an intermediate. The intermediate thermally dissociates to give RuIIOEP and CO. Photodecarbonylation via the triplet mechanism is also discussed in detail. © 1990 American Chemical Society.
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页码:673 / 678
页数:6
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