Non-calcining process for CuAlO2 and CuAl0.9Ca0.1O2 ceramics
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference27 articles.
1. High-temperature thermoelectric properties of In2O3-based mixed oxides and their applicability to thermoelectric power generation
2. Electrical Transport Properties and High-Temperature Thermoelectric Performance of (Ca0.9M0.1)MnO3 (M = Y, La, Ce, Sm, In, Sn, Sb, Pb, Bi)
3. High‐temperature thermoelectric properties of (Zn1−xAlx)O
4. Improvement in thermoelectric properties of (ZnO)5In2O3 through partial substitution of yttrium for indium
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1. Improvement in electrical properties of thermoelectric CuAlO2 ceramics aided by aluminosilicate glass;International Journal of Applied Ceramic Technology;2018-03-23
2. Effect of starch addition on structural, electrical and thermal properties of delafossite CuAl 0.9 Fe 0.1 O 2;Materials Science and Engineering: B;2017-12
3. Enhancing the electrical conductivity and thermoelectric figure of merit of the p-type delafossite CuAlO 2 by Ag 2 O addition;Current Applied Physics;2017-10
4. Power factor improvement of delafossite CuAlO2 by liquid-phase sintering with Ag2O addition;Materials Science in Semiconductor Processing;2016-12
5. Optimum sintering temperature for thermoelectric properties of low-cost CuAl0.90Fe0.10O2 material;Journal of Materials Science: Materials in Electronics;2016-06-27
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