Title :
Preparation and NO2 gas properties of layer-by-layer alternate films of copper phthalocyanine derivatives
Author :
Shinbo, K. ; Watanabe, N. ; Kato, K. ; Kaneko, F. ; Advincula, R.C.
Author_Institution :
Dept. of Electr. & Electron. Eng., Niigata Univ., Japan
Abstract :
Copper phthalocyanine (CuPc) alternate layer-by-layer (LbL) films were fabricated and the electrical properties due to NO2 gas adsorption were investigated. Water-soluble CuPc, that is, cationic Alcian blue, pyridine variant (AB) and anionic copper phthalocyanine-3,4\´,4",4\´"-tetrasulfonic acid, tetrasodium salt (CuPcTs) were used for the fabrication of the alternate LbL films. UV-visible absorption and ellipsometry measurements were carried out and successive depositions of the CuPc alternate LbL films were confirmed. The average thicknesses of the AB and CuPcTs monolayers were estimated to be about 0.7 and 0.4 nm, respectively. The fundamental electrical properties were investigated for the CuPc alternate LbL films with Au gap electrodes and the properties in the direction parallel to the surfaces of the LbL films were investigated. The response to NO2 gas was also measured and the large increase of conduction currents due to NO2 gas adsorption was observed. The magnitude of the conduction current after 30 min exposure to 100 ppm NO2 gas was 103-104 times larger than that in N2 gas. Fast response was observed for the thin LbL films.
Keywords :
adsorbed layers; adsorption; chemical vapour deposition; copper compounds; electrical conductivity; ellipsometry; monolayers; nitrogen compounds; organometallic compounds; thin films; visible spectra; 30 min; Au; Au gap electrodes; NO2; NO2 gas properties; UV-visible absorption; cationic Alcian blue; conduction currents; copper phthalocyanine derivatives; copper phthalocyanine-3,4\´,4",4\´"-tetrasulfonic acid; electrical properties; ellipsometry; gas adsorption; layer-by-layer alternate films; monolayers; pyridine variant; tetrasodium salt; water-soluble copper phthalocyanine; Absorption; Chemistry; Conducting materials; Copper; Electrodes; Ellipsometry; Fabrication; Gas detectors; Gold; Substrates;
Conference_Titel :
Electrical Insulating Materials, 2005. (ISEIM 2005). Proceedings of 2005 International Symposium on
Conference_Location :
Kitakyushu
Print_ISBN :
4-88686-063-X
DOI :
10.1109/ISEIM.2005.193379