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IONIC CONDUCTIVITY IN CRYSTALLINE, G...
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KIM, CHY HYUNG.
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IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE).
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE)./
作者:
KIM, CHY HYUNG.
面頁冊數:
127 p.
附註:
Source: Dissertation Abstracts International, Volume: 46-01, Section: B, page: 0156.
Contained By:
Dissertation Abstracts International46-01B.
標題:
Chemistry, Inorganic. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=8506848
IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE).
KIM, CHY HYUNG.
IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE).
- 127 p.
Source: Dissertation Abstracts International, Volume: 46-01, Section: B, page: 0156.
Thesis (Ph.D.)--Polytechnic University, 1985.
The structure of Na(,3)YSi(,3)O(,9) was studied by x-ray diffraction and infrared spectrum and was found to be isostructural with Na(,4)CaSi(,3)O(,9) except for it being pseudo-cubic instead of cubic. Solid solutions of the type Na(,3)YSi(,3)O(,9) with the general formula Na(,3+x)M(,1-y)Si(,3-z)P(,z)O(,9+(x-3y+z)/2) (M = Lu, Yb, Tm, Er, Y, Ho, Dy, Gd, Eu, and Sm) have been synthesized. X-ray diffraction showed single phase in the composition range y = 0-0.3, z = 0-0.2, and for some particular values of x usually between 0-0.4. Ionic conductivity measurements were done on these compounds in three different states, crystalline, glass, and glass-ceramic. The results showed comparable values. Conductivity of Na(,3.2)Sm(,0.7)Si(,2.9)P(,0.1)O(,8.7) was about 7.8 x 10('-4) (ohm-cm)('-1) at 320(DEGREES)C in the crystalline form and about 8.5 x 10('-4) (ohm-cm)('-1) for Na(,3.2)Y(,0.7)Si(,2.9)P(,0.1)O(,8.7) at 320(DEGREES)C in the glassy state. In the crystalline state, an increase in sodium concentration and a decrease in M('+3) concentration induced higher ionic conductivity. These effects could be explained as being due to an increase in the mobile species concentration and the formation of vacancies, where the size of M('+3) influences the unit cell volume thereby leading to an effect on the magnitude of the conductivity. Measurements of conductivity in Na(,5)MSi(,4)O(,12) (M = Er, Y, Gd, and Sm) type materials both in the glass and glass-ceramic states were also carried out. The conductivities in the glass and glass-ceramic states were lower than those in the crystalline state. The conductivity of glass-ceramic was larger than that of the glassy state. The activation energies of samples with M = Er and Y in glass-ceramic state were 4.0 and 4.4 Kcal/mole respectively, while in the crystalline state values of 7.5 and 7.1 Kcal/mole were obtained.Subjects--Topical Terms:
517253
Chemistry, Inorganic.
IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE).
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IONIC CONDUCTIVITY IN CRYSTALLINE, GLASS, AND GLASS-CERAMIC STATES OF NA(,3)YSI(,3)O(,9) AND NA(,5)YSI(,4)O(,12) TYPE MATERIALS (X-RAY, ACTIVATION ENERGY, SODIUM, YTTRIUM, SILICON, OXIDE).
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The structure of Na(,3)YSi(,3)O(,9) was studied by x-ray diffraction and infrared spectrum and was found to be isostructural with Na(,4)CaSi(,3)O(,9) except for it being pseudo-cubic instead of cubic. Solid solutions of the type Na(,3)YSi(,3)O(,9) with the general formula Na(,3+x)M(,1-y)Si(,3-z)P(,z)O(,9+(x-3y+z)/2) (M = Lu, Yb, Tm, Er, Y, Ho, Dy, Gd, Eu, and Sm) have been synthesized. X-ray diffraction showed single phase in the composition range y = 0-0.3, z = 0-0.2, and for some particular values of x usually between 0-0.4. Ionic conductivity measurements were done on these compounds in three different states, crystalline, glass, and glass-ceramic. The results showed comparable values. Conductivity of Na(,3.2)Sm(,0.7)Si(,2.9)P(,0.1)O(,8.7) was about 7.8 x 10('-4) (ohm-cm)('-1) at 320(DEGREES)C in the crystalline form and about 8.5 x 10('-4) (ohm-cm)('-1) for Na(,3.2)Y(,0.7)Si(,2.9)P(,0.1)O(,8.7) at 320(DEGREES)C in the glassy state. In the crystalline state, an increase in sodium concentration and a decrease in M('+3) concentration induced higher ionic conductivity. These effects could be explained as being due to an increase in the mobile species concentration and the formation of vacancies, where the size of M('+3) influences the unit cell volume thereby leading to an effect on the magnitude of the conductivity. Measurements of conductivity in Na(,5)MSi(,4)O(,12) (M = Er, Y, Gd, and Sm) type materials both in the glass and glass-ceramic states were also carried out. The conductivities in the glass and glass-ceramic states were lower than those in the crystalline state. The conductivity of glass-ceramic was larger than that of the glassy state. The activation energies of samples with M = Er and Y in glass-ceramic state were 4.0 and 4.4 Kcal/mole respectively, while in the crystalline state values of 7.5 and 7.1 Kcal/mole were obtained.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=8506848
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