EFFECT OF METAL-FILMS ON THE PHOTOLUMINESCENCE AND ELECTROLUMINESCENCE OF CONJUGATED POLYMERS

Citation
H. Becker et al., EFFECT OF METAL-FILMS ON THE PHOTOLUMINESCENCE AND ELECTROLUMINESCENCE OF CONJUGATED POLYMERS, Physical review. B, Condensed matter, 56(4), 1997, pp. 1893-1905
Citations number
50
Categorie Soggetti
Physics, Condensed Matter
ISSN journal
01631829
Volume
56
Issue
4
Year of publication
1997
Pages
1893 - 1905
Database
ISI
SICI code
0163-1829(1997)56:4<1893:EOMOTP>2.0.ZU;2-P
Abstract
We report the modification of photoluminescence (PL) and electrolumine scence (EL) from conjugated polymers due to the proximity of metal fil ms. The presence of a metal film alters the radiative decay rate of an emitter via interference effects, and also opens up an efficient nonr adiative decay channel via energy transfer to the metal film. We show that these effects lead to substantial changes in the PL and EL quantu m efficiencies and the emission spectra of the polymers studied here [ cyano derivatives of poly(p-phenylenevinylene), PPV] as a function of the distance of the emitting dipoles from the metal film. We have meas ured the PL quantum efficiency directly using an integrating sphere, a nd found its distance dependence to be in good agreement with earlier theoretical predictions. Using the spectral dependence of the emission , we have been able to investigate the effect of interference on the r adiative rate as a function of the wavelength and the distance between I-he emitter and the mirror. We compare our results with simulations of the radiative power of an oscillating dipole in a similar system. F rom our results we can determine the orientation of the dipoles in the polymer film, and the branching ratio that gives the fraction of abso rbed photons leading to singlet excitons. We propose design rules for light-emitting diodes (LED's) and photovoltaic cells that optimize the effects of the metal film. By making optimum use of above effects we have substantially increased the EL quantum efficiencies of PPV/cyano- PPV double-layer LED's.