PICOSECOND DYNAMICS OF ADSORBED DYES - A TIME-RESOLVED SURFACE 2ND-HARMONIC GENERATION STUDY OF RHODAMINE-110 ON SILICA

Citation
Mje. Morgenthaler et Sr. Meech, PICOSECOND DYNAMICS OF ADSORBED DYES - A TIME-RESOLVED SURFACE 2ND-HARMONIC GENERATION STUDY OF RHODAMINE-110 ON SILICA, Journal of physical chemistry, 100(9), 1996, pp. 3323-3329
Citations number
39
Categorie Soggetti
Chemistry Physical
ISSN journal
00223654
Volume
100
Issue
9
Year of publication
1996
Pages
3323 - 3329
Database
ISI
SICI code
0022-3654(1996)100:9<3323:PDOAD->2.0.ZU;2-7
Abstract
The picosecond dynamics of adsorbed rhodamine 110 have been observed b y time-resolved surface second harmonic generation (SHG). This techniq ue reveals details of the coverage-dependent photophysics and photoche mistry of adsorbed dyes which are not available from, for example, flu orescence decay experiments. In particular the ground-state recovery w as found to be biphasic, with recovery times of a few picoseconds and tens of microseconds. This behavior is attributed to an ultrafast inte rnal conversion of the initially excited state followed by either fast vibrational relaxation to the initial ground state or a disruption of the dye layer in the hot ground state leading to a metastable form of the ground state with a reduced hyperpolarizability. Other models are discussed, but none readily reproduce the time-resolved SHG data. The large difference between solution phase and adsorbate photophysics is attributed to the formation on the surface of dimers and higher aggre gates. The existence of such aggregates is revealed in the absorption spectra. Stationary-state SHG measurements show that the most probable adsorption geometry is with the molecular plane of the dye perpendicu lar to the surface; this is consistent with the formation of cofacial aggregates. With polarization-resolved SHG it was shown that the adsor bate orientation is not coverage dependent, at least between 0.2 and 1 monolayer; however, a meaningful angle of adsorption could not be det ermined.