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Thermal Properties of Pure and Doped Lithium-Ammonium Sulphate Single Crystals

Research Abstract

The thermal diffusivity α of pure lithium-ammonium sulphate (LAS) crystals is measured along the three crystallographic directions in the temperature range 300–500 K using the plane temperature wave technique. The effect of doping LAS crystals with some divalent metal ions on the temperature dependence of α in both the ferroelectric and paraelectric phases is discussed. The average length of the distorted regions formed by the dopant in the lattice of LAS is calculated. The thermal conductivity of LAS crystals is calculated in the same temperature range. The phonon mean free path in both the ferroelectric and paraelectric phases is estimated and the results are discussed in the light of the difference between the ionic radii and the concentrations of the dopant ions in LAS.

Research Authors
M. A. Gaffar, Galal A. Mohamed, A. Abu El-Fadl and A. M. Mebed
Research Department
Research Journal
Physica B: Condensed Matter
Research Pages
pp. 224-230
Research Rank
1
Research Vol
Vol. 205
Research Year
1995

Thermal Properties of Pure and Doped Lithium-Ammonium Sulphate Single Crystals

Research Abstract

The thermal diffusivity α of pure lithium-ammonium sulphate (LAS) crystals is measured along the three crystallographic directions in the temperature range 300–500 K using the plane temperature wave technique. The effect of doping LAS crystals with some divalent metal ions on the temperature dependence of α in both the ferroelectric and paraelectric phases is discussed. The average length of the distorted regions formed by the dopant in the lattice of LAS is calculated. The thermal conductivity of LAS crystals is calculated in the same temperature range. The phonon mean free path in both the ferroelectric and paraelectric phases is estimated and the results are discussed in the light of the difference between the ionic radii and the concentrations of the dopant ions in LAS.

Research Authors
M. A. Gaffar, Galal A. Mohamed, A. Abu El-Fadl and A. M. Mebed
Research Department
Research Journal
Physica B: Condensed Matter
Research Pages
pp. 224-230
Research Rank
1
Research Vol
Vol. 205
Research Year
1995

Thermal Properties of Pure and Doped Lithium-Ammonium Sulphate Single Crystals

Research Abstract

The thermal diffusivity α of pure lithium-ammonium sulphate (LAS) crystals is measured along the three crystallographic directions in the temperature range 300–500 K using the plane temperature wave technique. The effect of doping LAS crystals with some divalent metal ions on the temperature dependence of α in both the ferroelectric and paraelectric phases is discussed. The average length of the distorted regions formed by the dopant in the lattice of LAS is calculated. The thermal conductivity of LAS crystals is calculated in the same temperature range. The phonon mean free path in both the ferroelectric and paraelectric phases is estimated and the results are discussed in the light of the difference between the ionic radii and the concentrations of the dopant ions in LAS.

Research Authors
M. A. Gaffar, Galal A. Mohamed, A. Abu El-Fadl and A. M. Mebed
Research Department
Research Journal
Physica B: Condensed Matter
Research Member
Mohamed Abdel-aziz Mohamed Gaafar
Research Pages
pp. 224-230
Research Rank
1
Research Vol
Vol. 205
Research Year
1995

Thermal Properties of Pure and Doped Lithium-Ammonium Sulphate Single Crystals

Research Abstract

The thermal diffusivity α of pure lithium-ammonium sulphate (LAS) crystals is measured along the three crystallographic directions in the temperature range 300–500 K using the plane temperature wave technique. The effect of doping LAS crystals with some divalent metal ions on the temperature dependence of α in both the ferroelectric and paraelectric phases is discussed. The average length of the distorted regions formed by the dopant in the lattice of LAS is calculated. The thermal conductivity of LAS crystals is calculated in the same temperature range. The phonon mean free path in both the ferroelectric and paraelectric phases is estimated and the results are discussed in the light of the difference between the ionic radii and the concentrations of the dopant ions in LAS.

Research Authors
M. A. Gaffar, Galal A. Mohamed, A. Abu El-Fadl and A. M. Mebed
Research Department
Research Journal
Physica B: Condensed Matter
Research Pages
pp. 224-230
Research Rank
1
Research Vol
Vol. 205
Research Year
1995

Effcct of Doping on the Structural Changes Associated with the High-Temperature Phase Transition of LiNH4S04 Crystals

Research Authors
M. A. Gaffar, Y. A. Badr and A. M. Mebed
Research Department
Research Journal
Phys. Stat. Sol. (a)
Research Pages
pp. 143-152
Research Rank
1
Research Vol
Vol. 148
Research Year
1994

Effcct of Doping on the Structural Changes Associated with the High-Temperature Phase Transition of LiNH4S04 Crystals

Research Authors
M. A. Gaffar, Y. A. Badr and A. M. Mebed
Research Department
Research Journal
Phys. Stat. Sol. (a)
Research Member
Research Pages
pp. 143-152
Research Rank
1
Research Vol
Vol. 148
Research Year
1994

Effcct of Doping on the Structural Changes Associated with the High-Temperature Phase Transition of LiNH4S04 Crystals

Research Authors
M. A. Gaffar, Y. A. Badr and A. M. Mebed
Research Department
Research Journal
Phys. Stat. Sol. (a)
Research Member
Mohamed Abdel-aziz Mohamed Gaafar
Research Pages
pp. 143-152
Research Rank
1
Research Vol
Vol. 148
Research Year
1994

Conditions Affecting the Growth Mechanism of Pure and Doped Ammonium Sulphate Single Crystals

Research Authors
M. A. Gaffar, Galal A. Mohamed, S. M. El-Halwany and M. A. El- Maghraby
Research Department
Research Journal
Bull. Fac. Sci., ASSIUT UNIV
Research Member
Elmaghrebi Mohamed Abo Elhdid Elmaghrebi
Research Pages
pp. 77-88
Research Rank
1
Research Vol
Vol. 23, No. (l-D)
Research Year
1994

Conditions Affecting the Growth Mechanism of Pure and Doped Ammonium Sulphate Single Crystals

Research Authors
M. A. Gaffar, Galal A. Mohamed, S. M. El-Halwany and M. A. El- Maghraby
Research Department
Research Journal
Bull. Fac. Sci., ASSIUT UNIV
Research Member
Salah El-deen Mohamed Mohamed El-halawany
Research Pages
pp. 77-88
Research Rank
1
Research Vol
Vol. 23, No. (l-D)
Research Year
1994
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