Formation and Entrapment of Tris(8-hydroxyquinoline) aluminum from 8-Hydroxyquinoline in Anodic Porous Alumina

被引:9
|
作者
Yamaguchi, Shohei [1 ]
Matsui, Kazunori [1 ]
机构
[1] Kanto Gakuin Univ, Grad Sch Engn, Dept Appl Mat & Life Sci, Kanazawa Ku, 1-50-1 Mutsuurahigashi, Yokohama, Kanagawa 2368501, Japan
关键词
anodic porous alumina; tris(8-hydroxyquinoline) aluminum; 8-hydroxyquinoline; absorption spectra; fluorescence spectra; ALQ(3); LUMINESCENCE; ANODIZATION; MEMBRANES; EMISSION; ARRAYS; VOIDS; FILMS;
D O I
10.3390/ma9090715
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The formation and entrapment of tris(8-hydroxyquinoline) aluminum (Alq(3)) molecules on the surface of anodic porous alumina (APA) immersed in an ethanol solution of 8-hydroxyquinoline (HQ) were investigated by absorption, fluorescence, and Raman spectroscopies. The effects of the selected APA preparation conditions (galvanostatic or potentiostatic anodization method, anodizing current and voltage values, one-or two-step anodizing process, and sulfuric acid electrolyte concentration) on the adsorption and desorption of Alq(3) species were examined. Among the listed parameters, sulfuric acid concentration was the most important factor in determining the Alq(3) adsorption characteristics. The Alq(3) content measured after desorption under galvanostatic conditions was 2.5 times larger than that obtained under potentiostatic ones, regardless of the adsorbed quantities. The obtained results suggest the existence of at least two types of adsorption sites on the APA surface characterized by different magnitudes of the Alq(3) bonding strength. The related fluorescence spectra contained two peaks at wavelengths of 480 and 505 nm, which could be attributed to isolated Alq(3) species inside nanovoids and aggregated Alq(3) clusters in the pores of APA, respectively. The former species were attached to the adsorption sites with higher binding energies, whereas the latter ones were bound to the APA surface more weakly. Similar results were obtained for the Alq(3) species formed from the HQ solution, which quantitatively exceeded the number of the Alq(3) species adsorbed from the Alq(3) solution. Alq(3) molecules were formed in the HQ solution during the reaction of HQ molecules with the Al3+ ions in the oxide dissolution zone near the oxide/electrolyte interface through the cracks and the Al3+ ions adsorbed on surface of pore and cracks. In addition, it was suggested that HQ molecules could penetrate the nanovoids more easily than Alq(3) species because of their smaller sizes, which resulted in higher magnitudes of the adsorption.
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页数:16
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