Title :
Molecular aligned thin films and surface plasmon resonance in three-layers cells
Author :
Kikuchi, T. ; Mito, A. ; Yamashita, M.
Author_Institution :
Fac. of Sci. & Technol., Sci. Univ. of Tokyo, Japan
fDate :
Aug. 30 1999-Sept. 3 1999
Abstract :
We find that microcrystalline orientation has a strong effect on the optical properties of evaporated thin films. And, we observed the surface structure of thin-films by using an atomic force microscope (AFM). The reflective intensities of attenuated total reflection curves for tin-phthalocyanine (SnPc) layer thin-films and Al thin-films were shown. Based on these results, correlations between the electric field induced by surface plasmon resonance and fabrication conditions (for example, molecular alignments, thickness, molecular size) were studied from the applied point of view as a photoelectric conversion cell. Three-layer cells that were formed from three kinds of materials (gold, SnPc and aluminum) were fabricated to investigate the photoelectric conversion efficiency. The most suitable thickness in each layer must be decided to enhance the optical properties of SnPc and the photoelectric conversion efficiency of three-layer sandwich solar cells.
Keywords :
aluminium; atomic force microscopy; attenuated total reflection; gold; molecular orientation; nonlinear optical susceptibility; photoelectric cells; solar cells; surface plasmon resonance; thin films; tin compounds; Al; Al thin-films; Au; Au thin-films; atomic force microscope; attenuated total reflection curves; electric field; evaporated thin films; fabrication conditions; microcrystalline orientation; molecular aligned thin films; molecular alignments; optical properties; photoelectric conversion cell; photoelectric conversion efficiency; reflective intensities; surface plasmon resonance; surface structure; three-layer cells; three-layer sandwich solar cells; three-layers cells; tin-phthalocyanine layer thin-films; Atom optics; Atomic force microscopy; Atomic layer deposition; Optical attenuators; Optical films; Plasmons; Resonance; Surface structures; Thin films; Transistors;
Conference_Titel :
Lasers and Electro-Optics, 1999. CLEO/Pacific Rim '99. The Pacific Rim Conference on
Conference_Location :
Seoul, South Korea
Print_ISBN :
0-7803-5661-6
DOI :
10.1109/CLEOPR.1999.817870