Solarization mechanism of glass containing Ce3+ and As5+ |
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Authors: | Hideo Hosono Yoshihiro Abe Hiroshi Kawazoe Hiroshi Imagawa |
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Affiliation: | Department of Inorganic Materials, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya 466, Japan;Department of Industrial Chemistry, Faculty of Technology, Tokyo Metropolitan University, Fukasawa, Setagaya-ku, Tokyo 158, Japan;Toshiba Research and Development Center, Toshiba Corporation, Komukai-Toshiba-cho, Saiwai-ku, Kawasaki 210, Japan |
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Abstract: | The solarization mechanism in a glass containing both Ce3+ and As5+, 16Na2O·11CaO·73SiO2:0.15AsOx·0.015CeOx (in mol.%), is newly proposed by elucidating the valence and coordination structure of arsenic after the photochemical reaction, the mechanism being traditionally expressed as ESR hyperfine quartets due to an As4+ ranging from 0.1 to 0.5 T built up on UV-irradiation and their line shape varied with the duration of the irradiation. The line shape analysis of the ESR spectra employing a computer simulation technique has led to the following conclusions; (1) As5+ is reduced to As4+ in the solarization process. (2) The geometry around the As4+ in the solarized glass is tetrahedral during the early stage and trigonal-pyramidal during the latter stage of the reaction. |
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