Fluorescence, decay time, and structural change of laser dye cresyl violet in solution due to microwave irradiation at GSM 900/1800 mobile phone frequencies

Microwave irradiation at GSM 900/1800 MHz mobile phone frequencies affects the electronic structure of cresyl violet in solution. These changes are important because laser-dye cresyl violet strongly bonds to DNA- and RNA-rich cell compounds in nerve tissues. The irradiation effects on the electronic structure of cresyl violet and its fluorescence data were all obtained experimentally at room temperature. For most laser dyes, this is not a trivial task because laser dye molecules possess a relatively complex structure. They usually consist of an extended system of conjugated double or aromatic ?-bonds with attached auxochromic (electron donating) groups shifting the absorption band further towards longer wavelength. Because of the intrinsically high degree of conjugation, the vibrational modes of the molecular units couple strongly with each other. We found that the fluorescence quantum yield was increased from 0.54 ± 0.03 to 0.75 ± 0.01 due to intramolecular energy hopping of cresyl violet in solution which is exposed to microwave irradiation at mobile phone frequencies, and the photonic product cannot be used as a laser dye anymore. © 2012 Fuat Bayrakceken and Korkut Yegin.

Dergi Adı International Journal of Photoenergy
Cild 2012
Sayfalar -
Yayın Tarihi 2012
Eser Adı
[dc.title]
Fluorescence, decay time, and structural change of laser dye cresyl violet in solution due to microwave irradiation at GSM 900/1800 mobile phone frequencies
Yazar
[dc.contributor.author]
Bayrakceken, F.
Yazar
[dc.contributor.author]
Yegin, K.
Yayın Türü
[dc.type]
article
Özet
[dc.description.abstract]
Microwave irradiation at GSM 900/1800 MHz mobile phone frequencies affects the electronic structure of cresyl violet in solution. These changes are important because laser-dye cresyl violet strongly bonds to DNA- and RNA-rich cell compounds in nerve tissues. The irradiation effects on the electronic structure of cresyl violet and its fluorescence data were all obtained experimentally at room temperature. For most laser dyes, this is not a trivial task because laser dye molecules possess a relatively complex structure. They usually consist of an extended system of conjugated double or aromatic ?-bonds with attached auxochromic (electron donating) groups shifting the absorption band further towards longer wavelength. Because of the intrinsically high degree of conjugation, the vibrational modes of the molecular units couple strongly with each other. We found that the fluorescence quantum yield was increased from 0.54 ± 0.03 to 0.75 ± 0.01 due to intramolecular energy hopping of cresyl violet in solution which is exposed to microwave irradiation at mobile phone frequencies, and the photonic product cannot be used as a laser dye anymore. © 2012 Fuat Bayrakceken and Korkut Yegin.
Kayıt Giriş Tarihi
[dc.date.accessioned]
2020-03-18
Yayın Tarihi
[dc.date.issued]
2012
Açık Erişim Tarihi
[dc.date.available]
2020-03-18
Dil
[dc.language.iso]
eng
Haklar
[dc.rights]
info:eu-repo/semantics/openAccess
ISSN
[dc.identifier.issn]
1110662X
Dergi Adı
[dc.relation.journal]
International Journal of Photoenergy
Cild
[dc.identifier.volume]
2012
Tek Biçim Adres
[dc.identifier.uri]
https://hdl.handle.net/20.500.11831/5559
Görüntülenme Sayısı ( Şehir )
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Görüntülenme Sayısı ( Zaman Dağılımı )
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16
20.03.2023 tarihinden bu yana
İndirme
1
20.03.2023 tarihinden bu yana
Son Erişim Tarihi
30 Eylül 2023 15:16
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violet cresyl structure irradiation because strongly fluorescence solution electronic frequencies mobile couple quantum molecular vibrational conjugation degree intrinsically Because wavelength longer towards further Microwave photonic Korkut Bayrakceken anymore cannot product microwave increased exposed hopping energy
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