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Electronic excitation energy Stokes shift

Hydrogen transfer in excited electronic states is being intensively studied with time-resolved spectroscopy. A typical scheme of electronic terms is shown in fig. 46. A vertical optical transition, induced by a picosecond laser pulse, populates the initial well of the excited Si state. The reverse optical transition, observed as the fluorescence band Fj, is accompanied by proton transfer to the second well with lower energy. This transfer is registered as the appearance of another fluorescence band, F2, with a large anti-Stokes shift. The rate constant is inferred from the time dependence of the relative intensities of these bands in dual fluorescence. The experimental data obtained by this method have been reviewed by Barbara et al. [1989]. We only quote the example of hydrogen transfer in the excited state of... [Pg.109]


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Electron shift

Electronic excitation energy

Electronic excited

Electronical excitation

Electrons excitation

Electrons excitation energy

Electrons, excited

Energy excited electronic

Energy shifts

Excitation energy

Excitation shift

Shifts, electronic

Stokes shifted

Stokes shifting

Stokes shifts

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