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Original Articles

The diffusion-controlled relaxation model for ionic transport in glasses

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Pages 777-792 | Received 20 Mar 1989, Accepted 03 Jul 1989, Published online: 20 Aug 2006

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S.R. Elliott. (1991) Ionic transport in glassy materials. Radiation Effects and Defects in Solids 119-121:1, pages 3-8.
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Crossref
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Crossref
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Crossref
A Moguš-Milanković, B Šantić, D.E Day & C.S Ray. (2001) Electrical conductivity in mixed-alkali iron phosphate glasses. Journal of Non-Crystalline Solids 283:1-3, pages 119-128.
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Crossref
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Crossref
M.D. Ingram. 2001. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 204 211 .
S. Krishnaswami, H. Jain, E.I. Kamitsos & J.A. Kapoutsis. (2000) Connection between the microwave and far infrared conductivity of oxide glasses. Journal of Non-Crystalline Solids 274:1-3, pages 307-312.
Crossref
Junichi Kawamura, Naoaki Kuwata & Yoshio Nakamura. (1998) Frequency dependent conductivity of organic–inorganic mixed superionic conductor glasses. Solid State Ionics 113-115, pages 703-709.
Crossref
A. V. Vaysleyb. (1998) Dynamic cluster model of the ac conductivity of crystalline materials and glasses. Physical Review B 58:13, pages 8407-8410.
Crossref
A. S. Nowick, A. V. Vaysleyb & I. Kuskovsky. (1998) Universal dielectric response of variously doped ionically conducting ceramics . Physical Review B 58:13, pages 8398-8406.
Crossref
K. J. Rao, N. Baskaran, P. A. Ramakrishnan, B. G. Ravi & A. Karthikeyan. (1998) Structural and Lithium Ion Transport Studies in Sol−Gel-Prepared Lithium Silicophosphate Glasses. Chemistry of Materials 10:10, pages 3109-3123.
Crossref
C. León, J. Santamarı́a, M.A. Parı́s, J. Sanz, J. Ibarra & A. Várez. (1998) Non-Debye conductivity relaxation in the non-Arrhenius Li0.5La0.5TiO3 fast ionic conductor. A nuclear magnetic resonance and complex impedance study. Journal of Non-Crystalline Solids 235-237, pages 753-760.
Crossref
A.S Nowick, A.V Vaysleyb & Wu Liu. (1998) Identification of distinctive regimes of behaviour in the ac electrical response of glasses. Solid State Ionics 105:1-4, pages 121-128.
Crossref
Armin Bunde, Klaus Funke & Malcolm D Ingram. (1998) Ionic glasses: History and challenges. Solid State Ionics 105:1-4, pages 1-13.
Crossref
A. Pimenov, P. Lunkenheimer, M. Nicklas, R. Böhmer, A. Loidl & C.A. Angell. (1997) Ionic transport and heat capacity of glass-forming metalnitrate mixtures. Journal of Non-Crystalline Solids 220:1, pages 93-101.
Crossref
Allen Hunt. (1997) The mixed-alkali effect discussed within the context of percolative transport. Journal of Non-Crystalline Solids 220:1, pages 1-16.
Crossref
C. León, J. Santamaría, M. A. París, J. Sanz, J. Ibarra & L. M. Torres. (1997) Non-Arrhenius conductivity in the fast ionic conductor Reconciling spin-lattice and electrical-conductivity relaxations . Physical Review B 56:9, pages 5302-5305.
Crossref
J.Ross Macdonald. (1997) Possible universalities in the ac frequency response of dispersed, disordered materials. Journal of Non-Crystalline Solids 210:1, pages 70-86.
Crossref
F. Salami, J. C. Giuntini, S. S. Soulayman & J. V. Zanchetta. (1996) Survey of the pre-factor of the power-law frequency dependence in the silver conducting chalcogenide glasses. Applied Physics A Materials Science & Processing 63:5, pages 447-452.
Crossref
H. Jain & W.C. Huang. (1996) Significance of the disorder induced by neutron irradiation for electrical relaxation in SiO2. Journal of Non-Crystalline Solids 196, pages 267-274.
Crossref
S. Muthupari, S. Lakshmi Raghavan & K. J. Rao. (1996) Electrical Transport Studies in Alkali Borovanadate Glasses. The Journal of Physical Chemistry 100:10, pages 4243-4250.
Crossref
E. Mouchon & Ph. Colomban. (1996) Microwave absorbent: preparation, mechanical properties and r.f.-microwave conductivity of SiC (and/or mullite) fibre reinforced Nasicon matrix composites. Journal of Materials Science 31:2, pages 323-334.
Crossref
J.C. Giuntini, J.V. Zanchetta & F. Salam. (1995) Analysis of experimental problems connected with polarization conductivity measurements application to electronic and ionic transport. Materials Science and Engineering: B 33:2-3, pages 75-84.
Crossref
A.H. Verhoef & H.W. den Hartog. (1995) Infrared spectroscopy of network and cation dynamics in binary and mixed alkali borate glasses. Journal of Non-Crystalline Solids 182:3, pages 221-234.
Crossref
S. Balasubramanian & K.J. Rao. (1995) A molecular dynamics study of the mixed alkali effect in silicate glasses. Journal of Non-Crystalline Solids 181:1-2, pages 157-174.
Crossref
H. Jain & W.C. Huang. (1994) Importance of structure in electrical conductivity relaxation. Journal of Non-Crystalline Solids 172-174, pages 1334-1342.
Crossref
P. Balaya & C.S. Sunandana. (1994) Mixed alkali effect in the 30[(1 − x)Li2O · xNa2O]: 70TeO2 glass system. Journal of Non-Crystalline Solids 175:1, pages 51-58.
Crossref
M. Pal, S. K. Saha & D. Chakravorty. (1994) Relaxation studies on V2O5-TeO2 glasses using heterogeneous conductor model. Bulletin of Materials Science 17:4, pages 411-420.
Crossref
A. Abd El-Mongy. (1994) Effect of halogen on the structure and ionic conductivity of silicate glasses. Physica Status Solidi (a) 144:1, pages 17-22.
Crossref
D. Knödler, P. Pendzig & W. Dieterich. (2011) Monte Carlo Study of Dispersive Transport in Glassy Electrolytes. MRS Proceedings 369.
Crossref
D. Gamby. (1994) A numerical model for the accumulation of transverse cracks in a composite laminate subjected to tensile fatigue loading. Composites Science and Technology 50:3, pages 285-291.
Crossref
A. Hunt. (1993) Non-Debye relaxation and the glass transition. Journal of Non-Crystalline Solids 160:3, pages 183-227.
Crossref
F. E. G. Henn, J. C. Guintini & J. V. Zanchetta. (1993) Duality dc and frequency-dependent conductivity in ionic glasses: A possible experimental approach. Physical Review B 48:1, pages 573-576.
Crossref
S.K. Saha & D. Chakravorty. (2011) Conductivity relaxation studies on sol-gel-derived Li 2 O–SiO 2 glasses by a heterogeneous conductor model . Journal of Materials Research 8:6, pages 1442-1449.
Crossref
Ralf-R. Rietz & Wolfgang H. Meyer. (1993) Softening behavior and conductivity in ionene polymer glasses. Polymers for Advanced Technologies 4:23, pages 164-171.
Crossref
M. Tatsumisago, C. A. Angell & S. W. Martin. (1992) A new problem in the correlation of nuclear-spin relaxation and ionic conductivity in superionic glasses. The Journal of Chemical Physics 97:9, pages 6968-6974.
Crossref
Annie Pradel & Michel Ribes. (1992) Ionically conductive chalcogenide glasses. Journal of Solid State Chemistry 96:1, pages 247-257.
Crossref
Takashi Uchino, Tetsuo Sakka, Yukio Ogata & Matae Iwasaki. (1992) A new model of ionic transport for single- and mixed-alkali oxide glasses based on ab initio molecular orbital calculations. Journal of Non-Crystalline Solids 146, pages 26-42.
Crossref
F. Kremer & J. Klee. (1992) Dielectric properties of glassy cationic epoxide-amine addition polymers. Polymer 33:17, pages 3564-3568.
Crossref
Wolfgang H. Meyer, Ralf R. Rietz, Dieter Schaefer & Friedrich Kremer. (1992) Dielectric and electric relaxation in ionene-glasses. Electrochimica Acta 37:9, pages 1491-1494.
Crossref
F. Henn, S.R. Elliott & J.C. Giuntini. (1991) Complex permittivity in ionically conducting solids: a hopping model. Journal of Non-Crystalline Solids 136:1-2, pages 60-66.
Crossref
A Hunt. (1991) Transport in ionic conducting glasses. Journal of Physics: Condensed Matter 3:40, pages 7831-7842.
Crossref
O. Kanert, M. Kloke, R. Küchler, S. Rückstein & H. Jain. (2010) Nuclear Spin Relaxation. Nuclear Spin Relaxation and Electrical Conductivity in Lithium Germanate Glasses. Berichte der Bunsengesellschaft für physikalische Chemie 95:9, pages 1061-1068.
Crossref
H. Kahnt. (2010) Ionic Transport in Oxide Glasses and Frequency Dependence of Conductivity. Berichte der Bunsengesellschaft für physikalische Chemie 95:9, pages 1021-1025.
Crossref
S. R. Elliott & A. P. Owens. (2010) A Target Diffusion Theory for Nuclear Spin Relaxation in Ionically‐Conducting Glasses. Berichte der Bunsengesellschaft für physikalische Chemie 95:9, pages 987-992.
Crossref
Steve W. Martin. (2005) Ionic Conduction in Phosphate Glasses. Journal of the American Ceramic Society 74:8, pages 1767-1784.
Crossref
S. R. Elliott & A. P. Owens. (1991) Nuclear-spin relaxation in ionically conducting glasses: Application of the diffusion-controlled relaxation model. Physical Review B 44:1, pages 47-59.
Crossref
S. Etienne, J. Perez, A. Pradel & M. Ribes. (1991) Ionic and atomic degrees of freedom in silver chalcogenide glasses studied by mechanical and electrical spectroscopies. Journal of Non-Crystalline Solids 131-133, pages 1072-1075.
Crossref
A. Pradel & M. Ribes. (1991) Relaxation processes in ionic conductive chalcogenide glasses studied by electrical and NMR spectroscopies. Journal of Non-Crystalline Solids 131-133, pages 1063-1067.
Crossref
J.B. Bates, J.C. Wang & Y.T. Chu. (1991) Interface and bulk relaxation in solid ionic conductors. Journal of Non-Crystalline Solids 131-133, pages 1046-1052.
Crossref
S.R. Elliott & A.P. Owens. (1991) Non-exponential relaxation in ionically conducting glasses: the diffusion-controlled relaxation model. Journal of Non-Crystalline Solids 131-133, pages 1036-1040.
Crossref
R.H. Cole & E. Tombari. (1991) Analysis of electric relaxation in sodium trisilicate and lithium fluoroborate glasses from 102 to 109 Hz and 25 to 300°C. Journal of Non-Crystalline Solids 131-133, pages 969-972.
Crossref
P. Maass, J. Petersen, A. Bunde, W. Dieterich & H. E. Roman. (1991) Non-Debye relaxation in structurally disordered ionic conductors: Effect of Coulomb interaction. Physical Review Letters 66:1, pages 52-55.
Crossref
S.R. Elliott & F.E.G. Henn. (1990) Application of the Anderson-Stuart model to the AC conduction of ionically conducting materials. Journal of Non-Crystalline Solids 116:2-3, pages 179-190.
Crossref

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