Oxyfluoro aluminum-borate host glass: interband gap study and estimation of radiative lifetime for luminescent dopant ions
详细信息    查看全文
  • 作者:Fouad El-Diasty ; Manal Abdel-Baki ; F. A. Abdel-Wahab
  • 关键词:Glass ; Upconversion ; Radiative Lifetime
  • 刊名:Optical and Quantum Electronics
  • 出版年:2016
  • 出版时间:April 2016
  • 年:2016
  • 卷:48
  • 期:4
  • 全文大小:777 KB
  • 参考文献:Abdel Wahab, F.A., Shama, A., Abdel-Baki, M., El-Diasty, F.: Glass transition kinetics and radial distribution function to investigate the role of Cr2O3 on the structure of Li2O–Al2O3–SiO2 photonic glass. J. Alloys Compd. 513, 172–179 (2012)CrossRef
    Abdel-Baki, M., El-Diasty, F.: Glasses for photonic technologies. Int. J. Opt. Appl. 3, 125–137 (2013)
    Abdel-Baki, M., El-Diasty, F., Abdel Wahab, F.A.: Optical characterization of xTiO2–(60-x)SiO2–40Na2O glasses: II. Absorption edge, Fermi level, electronic polarizability and optical basicity. Opt. Commun. 261, 65–70 (2006)ADS CrossRef
    Abdel-Baki, M., Abdel Wahab, F.A., Radi, A., El-Diasty, F.: Factors affecting optical dispersion in borate glass systems. J. Phys. Chem. Solids 68, 1457–1470 (2007)ADS CrossRef
    Abrahams, I., Hadzifejzovic, E.: Lithium ion conductivity and thermal behaviour of glasses and crystallised glasses in the system Li2O–Al2O3–TiO2–P2O5. Solid State Ionics 134, 249–257 (2000)CrossRef
    Azeem, P.A., Kalidasan, M., Gopal, K.R., Reddy, R.R.: Spectral analysis of Eu3 + : B2O3–Al2O3–MF2 (M = Zn, Ca, Pb) glasses. J. Alloys Compd. 474, 536–540 (2009)CrossRef
    Babu, B.H., Kumar, V.V.R.K.: Photoluminescence and color tunability of γ-irradiated Tb3+–Sm3+-codoped oxyfluoride aluminoborate glasses. J. Mater. Sci. 49, 415–423 (2014)ADS CrossRef
    Baldacchini, G.: Colored LiF: an optical material for all seasons. J. Lumin. 100, 333–343 (2002)CrossRef
    Chen, D., Wang, Y., Yu, Y., Huang, P., Weng, F.: Near-infrared quantum cutting in transparent nanostructured glass ceramics. Opt. Lett. 33, 1884–1886 (2008)ADS CrossRef
    Chowdari, B.V.R., Zhou, R.: Study of the fluorinated lithium borate glasses. Solid State Ionics 78, 133–142 (1995)CrossRef
    DiDomenico, M., Wemple, S.H.: Oxygen-octahedra ferroelectrics I. Theory of electro-optical and nonlinear optical effects. J. Appl. Phys. 40, 720–734 (1969)ADS CrossRef
    Dimitrov, V., Komatsu, T.: Classification of simple oxide: a polarizability approach. J. Solid State Chem. 163, 100–112 (2002)ADS CrossRef
    Duffy, J.A.: Bonding, Energy Level and Bonds in Inorganic Solids. Longman, England (1990)
    El-Diasty, F., Moustafa, F.A., Abdel-Wahab, F.A., Abdel-Baki, M., Fayad, A.M.: Role of 4p-3d orbital hybridization on band gap engineering of heavy metal glass for optoelectronic applications. J. Alloy Compd. 605, 157–163 (2014)CrossRef
    Ghosh, G.: Handbook of thermo-optic coefficients of optical materials with applications. In: Palik, E.D. (ed.) Handbook of Optical Constants of Solids, vol. 5. Academic Press, New York (1998)
    Golyeva, E.V., Tolstikova, D.V., Kolesnikov, I.E., Mikhailov, M.D.: Effect of synthesis conditions and surrounding medium on luminescence properties of YVO4:Eu3+ nanopowders. J. Rare Earths 33, 129–134 (2015)CrossRef
    Henderson, B., Imbusch, G.F.: Optical Spectroscopy of Inorganic Solids, p. 173. Clarendon Press, Oxford (1989)
    Hirota, S., Izumitani, T.: Effect of cations on inherent absorption wavelength and oscillator strength of ultraviolet absorption in borate glasses. J. Non-Cryst. Solids 29, 109–117 (1978)ADS CrossRef
    Ikhmayies, S.J., Ahmad-Bitar, R.N.: A study of the optical bandgap energy and Urbach tail of spray-deposited CdS: in thin films. J. Mater. Res. Technol. 2, 221–227 (2013)CrossRef
    Karunakaran, R.T., Marimuthu, K., Babu, S.S., Arumugam, S.: Structural, optical and thermal studies of Eu3+ ions in lithium fluoroborate glasses. Solid State Sci. 11, 1882–1889 (2009)ADS CrossRef
    Khashan, M.A., El-Naggar, A.M.: A new method of finding the optical constants of a solid from the reflectance and transmittance spectrograms of its slab. Opt. Commun. 174, 445–453 (2000)ADS CrossRef
    Kittel, C.: Introduction to Solid State Physics, 2nd edn. Wiley, New York (1957)MATH
    Lim, S.T., Kim, T.W., Hur, S.G., Hwang, S.J., Park, H., Choi, W., Choy, J.H.: Effects of p- and d-block metal co-substitution on the electronic structure and physicochemical properties of InMO4 (M = Nb and Ta) semiconductors. Chem. Phys. Lett. 434, 251–255 (2007)ADS CrossRef
    Marimuthu, K., Karunakaran, R.T., Babu, S.S., Muralidharan, G., Arumugam, S., Jayasankar, C.K.: Structural and spectroscopic investigations on Eu3+-doped alkali fluoroborate glasses. Solid State Sci. 11, 1297–1302 (2009a)ADS CrossRef
    Marimuthu, K., Babu, S.S., Muralidharan, G., Arumugam, S., Jayasankar, C.K.: Structural and optical studies of Eu3+ ions in alkali borate glasses. Phys. Status Solidi A 206, 131–139 (2009b)ADS CrossRef
    Melsheimer, J., Ziegler, D.: Band gap energy and Urbach tail studies of amorphous, partially crystalline and polycrystalline tin dioxide. Thin Solid Films 129, 35–37 (1985)ADS CrossRef
    Meltzer, R., Feofilov, S., Tissue, B., Yuan, H.B.: Dependence of fluorescence lifetimes of Y2O3:Eu3+ nanoparticles on the surrounding medium. Phys. Rev. B 60, 14012–14015 (1999)ADS CrossRef
    Morinaga, K., Ito, T., Suginohara, Y., Yanagase, T.: Density of the molten CaO–SiO2–TiO2 system and infrared absorption spectra of its glasses. J. Jpn. Inst. Met. 38, 1065–1070 (1974)
    Moustafa, F.A., Abdel-Baki, M., Fayad, A.M., El-Diasty, F.: Role of mixed valence effect and orbital hybridization on molar volume of heavy metal glass for ionic conduction pathways augmentation. Am. J. Mater. Sci. 4, 119–126 (2014)
    Naresh, V., Buddhudu, S.: Structural, thermal, dielectric and ac conductivity properties of lithium fluoro-borate optical glasses. Ceram. Int. 38, 2325–2332 (2012)CrossRef
    Ratnakaram, Y.C., Reddy, A.V.: Electronic spectra and optical band gap studies in neodymium chlorophosphate glasses. J. Non-Cryst. Solids 277, 142–154 (2000)ADS CrossRef
    Reddy, M.S., Raju, G.N., Nagarjuna, G., Veeraiah, N.: Structural influence of aluminium, gallium and indium metal oxides by means of dielectric and spectroscopic properties of CaO–Sb2O3–B2O3 glass system. J. Alloys Compd. 438, 41–51 (2007)CrossRef
    Reisfeld, R.: Spectra and energy transfer of rare earths in inorganic glasses. Struct. Bond. 13, 53–98 (1973)CrossRef
    Reisfeld, R.: Radiative and nonradiative transition of rare earths in glasses. Struct. Bond. 22, 123–175 (1975)CrossRef
    Rittner, E.S.: Binding energy and dipole moment of alkali halide molecules. J. Chem. Phys. 19, 1030–1035 (1951)ADS CrossRef
    Studenyak, I., Kranjčec, M., Kurik, M.: Urbach rule in solid state physics. Int. J. Opt. Appl. 4, 76–83 (2014)
    Takebe, H., Morinaga, K., Izumitani, T.: Correlation between radiative transition probabilities of rare earth ions and composition in oxide glasses. J. Non-Cryst. Solids 178, 58–62 (1994)ADS CrossRef
    Tanaka, K.: Minimal Urbach energy in non-crystalline materials. J. Non-Cryst. Solids 389, 35–37 (2014)ADS CrossRef
    Urbach, F.: The long-wavelength edge of photographic sensitivity and of the electronic absorption of solids. Phys. Rev. 92, 1324–1333 (1953)ADS CrossRef
    Venkatramu, V., Babu, P., Jayasankar, C.K.: Fluorescence properties of Eu3+ ions doped borate and fluoroborate glasses containing lithium, zinc and lead. Spectrochem. Acta, Part A 63, 276–281 (2006)ADS CrossRef
    Wang, Y.H., Zuo, Y.Y., Gao, H.: Luminescence properties of nanocrystalline YVO4:Eu3+ under UV and VUV excitation. Mater. Res. Bull. 41, 2147–2153 (2006)CrossRef
    Weber, M.J.: Science and technology of laser glass. J. Non-Cryst. Solids 123, 208–222 (1990)ADS CrossRef
    Wiglus, R.J., Grzyb, T., Lis, S., Strek, W.: Hydrothermal preparation and photoluminescent properties of MgAl2O4:Eu3+ spinel nanocrystals. J. Lumin. 130, 434–441 (2010)CrossRef
    Wood, R.W.: Dispersion Theory in Physical Optics, vol. 3, pp. 463–469. Macmillan, New York (1936)
    Zhang, M.F., Shi, S.J., Meng, J.X., Wang, X.Q., Fan, H., Zhu, Y.C., Wang, X.Y., Qian, Y.T.: Preparation and characterization of near-infrared luminescent bifunctional core/shell nanocomposites. J. Phys. Chem. C 112, 2825 (2008)CrossRef
  • 作者单位:Fouad El-Diasty (1)
    Manal Abdel-Baki (2)
    F. A. Abdel-Wahab (1)

    1. Physics Department, Faculty of Science, Ain Shams University, Abbasia, Cairo, 11566, Egypt
    2. National Research Center, Glass Department, Dokki, Giza, 12311, Egypt
  • 刊物主题:Optics, Optoelectronics, Plasmonics and Optical Devices; Electrical Engineering; Characterization and Evaluation of Materials; Computer Communication Networks;
  • 出版者:Springer US
  • ISSN:1572-817X
文摘
A series of new oxyfluoro aluminum-borate glasses can be used as upconversion host glass is prepared by the conventional melt-quenching technique. The effect of replacement lithium partner elements on the optoelectronic properties of the prepared glasses is studied. With increasing the ratio of LiF/LiF+Li2O the ionic character of the glass increases leading to a decrease in both of the average oscillator strength and the average interband oscillator. Fluctuation in Urbach energy is recorded which is attributed to a fluctuated structural disorder-induced broadening. The increase in LiF/LiF+Li2O molar ratio shortened the estimated radiative lifetime for luminescent dopant ions. The radiative life time decreased with decreasing the average glass molecular weight associated with an increase in the glass ion packing ratio.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700