Pulse EPR spectroscopy of Cu2+-doped inorganic glasses

被引:9
|
作者
Stösser R. [1 ]
Sebastian S. [1 ]
Scholz G. [1 ,5 ]
Willer M. [2 ]
Jeschke G. [2 ,3 ]
Schweiger A. [2 ]
Nofz M. [4 ]
机构
[1] Institute of Chemistry, Humboldt University of Berlin, Berlin
[2] Laboratory of Physical Chemistry, ETH, Zürich
[3] Max Planck Inst. of Polymer Research, Mainz
[4] Fed. Inst. for Mat. Res. and Testing, Berlin
[5] Institute of Chemistry, Humboldt University of Berlin, D-10115 Berlin
关键词
Phosphate Glass; Hyperfine Coupling; Electron Spin Echo Envelope Modulation; Aluminosilicate Glass; Fluoride Glass;
D O I
10.1007/BF03161947
中图分类号
学科分类号
摘要
Two-frequency continuous-wave and pulse EPR (electron paramagnetic resonance) spectroscopical techniques are applied to determine static and dynamic EPR parameters of Cu2+ ions in oxide and fluoride glasses. The investigations are focussed on the analysis of strain effects in the glassy matrices, the identification of the magnetic nuclei in the vicinity of Cu2+ ions as well as the determination of the dependence of the phase memory time TM on temperature and resonance field. The results obtained by X-band continuous-wave EPR, X- and S-band echo-detected EPR, and X- and S-band electron spin echo envelope modulation studies of Cu2+-doped inorganic glasses yield information on the local symmetry of the Cu2+ coordination polyhedra, the chemical nature of the atoms in the second and higher coordination spheres, the distribution of the parameters of the static spin Hamiltonian and the low-temperature motions of the dopant-containing structural units. Special techniques like 2-D Mims ENDOR (electron nuclear double resonance) and hyperfine-correlated ENDOR are applied for the first time to doped inorganic glasses. From the spin relaxation measurements a stronger tendency of the Cu2+ ions to aggregate is found for fluoride glasses in comparison to aluminosilicate and phosphate glasses. ©Springer-Verlag 1999 Printed in Austria.
引用
收藏
页码:507 / 528
页数:21
相关论文
共 50 条
  • [41] Synthesis, EPR and optical spectroscopy of the Cr-doped tetraborate glasses
    Padlyak, B. V.
    Ryba-Romanowski, W.
    Lisiecki, R.
    Adamiv, V. T.
    Burak, Ya. V.
    Teslyuk, I. M.
    OPTICAL MATERIALS, 2012, 34 (12) : 2112 - 2119
  • [42] EPR STUDY OF DESTRUCTION OF INORGANIC GLASSES
    AKHMEDZADE, KA
    ZAKREVSK.VA
    YUDIN, DM
    FIZIKA TVERDOGO TELA, 1974, 16 (02): : 372 - 378
  • [43] Luminescence of Cu2+-doped ZnSe quantum dots with different parameters
    Wang, Qun
    Liu, Futian
    Jiang, Qinghui
    Chen, Xiuxiu
    Wang, Dongzhi
    MANUFACTURING PROCESSES AND SYSTEMS, PTS 1-2, 2011, 148-149 : 1268 - 1272
  • [44] EPR Spectroscopy of Chalcogenide Glasses
    L. N. Blinov
    Glass Physics and Chemistry, 2003, 29 : 203 - 223
  • [45] EPR spectroscopy of chalcogenide glasses
    Blinov, LN
    GLASS PHYSICS AND CHEMISTRY, 2003, 29 (03) : 203 - 223
  • [46] ESR OF CU2+-DOPED NANH4-TARTRATE (ARS)
    SUZUKI, I
    ABE, R
    MAEDA, M
    JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1972, 33 (03) : 860 - &
  • [47] Cu2+-doped Carbon Nitride/MWCNT as an Electrochemical Glucose Sensor
    Zheng, Weiran
    Li, Yong
    Liu, Mengjie
    Tsang, Chui-Shan
    Lee, Lawrence Yoon Suk
    Wong, Kwok-Yin
    ELECTROANALYSIS, 2018, 30 (07) : 1446 - 1454
  • [48] SPECTROSCOPY OF INORGANIC GLASSES
    YEN, WM
    DISORDERED SOLIDS: STRUCTURES AND PROCESSES, 1989, 46 : 299 - 315
  • [49] EPR and Optical Spectroscopy of Iron Doped Mixed Alkali Cadmium Phosphate Glasses
    Giridhar, G.
    Punyaseshudu, D.
    Prasad, M. V. V. K. Srinivas
    Venkateswarlu, M.
    Srinivas, G.
    ACTA PHYSICA POLONICA A, 2013, 123 (04) : 761 - 765
  • [50] Local symmetry of Cu2+ ions in sodium silicate glasses from data of EPR spectroscopy
    Andronenko, SI
    Andronenko, RR
    Vasil'ev, AV
    Zagrebel'nyi, OA
    GLASS PHYSICS AND CHEMISTRY, 2004, 30 (03) : 230 - 235