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Department of Physics

Naresuan University

Asst. Prof. Suphornphun Chootin

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1Phase formation, electric and magnetic properties of multiferroic 0.7 Ba0. 9Ca0. 1TiO3-0.3 Ni0. 6Zn0. 4Fe2O4 composites ceramics synthesized by the solid-state combustion technique 20250N/AN/A
2A Simplified Combustion Technique to Synthesize 0.1 BLTO-0.9 CZFO Nano Powders and Composite Ceramics with a High Magnetoelectric Coefficient 20230Q3Q4
3Effect of La2O3 Doping on Phase Formation, Microstructure and Electrical Properties of (K0. 44Na0. 52Li0. 04)(Nb0. 84Ta0. 10Sb0. 06) O3 Ceramics Synthesized via the Solid-State Combustion Method 20220Q4Q4
4Effect of Li2O addition on the phase formation, microstructure and electrical properties of 0.79Bi0.5Na0.5TiO3-0.18Bi0.5K0.5TiO3-0.03BiFeO3 ceramics 20220Q4Q1
5The Phase Structure, Microstructure, Dielectric and Magnetic Properties of 0.99(K0.45Na0.52Li0.03)(Nb0.94Sb0.06)O3-0.01BiScO3 Ceramics with NiO Doping 20212Q3Q3
6Phase formation, microstructure, electrical and magnetic properties of 0.94 Bi0. 50Na0. 50TiO3–0.06 Ba0. 85Ca0. 15Ti0. 90Zr0. 10O3 ceramics doped with Bi2FeCrO6 prepared via solid-state combustion technique 20202Q3Q1
7Phase formation, microstructure, electrical and magnetic properties of 0.94 Bi. sub. 0.50 Na. sub. 0.50 TiO. sub. 3-0.06 Ba. sub. 0.85 Ca. sub. 0.15 Ti. sub. 0.90 Zr. sub. 0.10 O. sub. 3 ceramics doped with Bi. sub. 2FeCrO. sub. 6 prepared via solid-state combustion technique 20200Q3Q1
8Phase Formation, Dielectric, Ferroelectric and Magnetic Properties of Cr2O3 Doped (Ba0.85Ca0.15)(Ti0.90Zr0.10)O3 Ceramics 20197Q3Q3
9Phase transition, electrical properties and large strain response in lead-free (1-x-y)BNT-xBKT-yKNN ceramics 20199Q3Q3
10The Influence of the Firing Temperatures on the Phase Evolution, Microstructure, Dielectric and Strain Responses of BCTS Ceramics Prepared by the Solid State Combustion Technique 20183N/AQ2
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