101 results on '"Bongkarn, Theerachai"'
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2. Effect of Firing Temperatures on Phase Formation, Microstructure, Dielectric and Magnetic Properties of Ni 0.6 Zn 0.4 Fe 2 O 4 Ceramics Synthesized by the Solid-State Combustion Technique
3. Phase Structure, Microstructure, and Electrical Properties of Bi 0.47 Na 0.47 Ba 0.06 TiO 3 Ceramics with (LiNb) 4+ Substituted into B-Sites
4. Effect of the Firing Temperatures on the Phase Evolution and Electrical Properties of 0.85[0.94Bi 0.5 Na 0.5 TiO 3 -0.06BaTiO 3 ]-0.15[Na 0.73 Bi 0.09 NbO 3 ] Ceramics Synthesized via the Solid-State Combustion Method
5. Effect of Na + Substitution on the Phase, Microstructure, Electrical and Energy Storage Properties of BSBZNT Ceramics Prepared by the Solid-State Combustion Technique
6. Enhancement of the Dielectric and Energy Storage Properties of Lead-Free BNSLT Ceramics by Zr 4+ Substitution into B-Sites
7. Fabrication of 0.7BaTiO 3 -0.3Ni 0.7 Zn 0.3 Fe 2 O 4 Multiferroic Composite Ceramics Prepared by the Solid-State Combustion Technique
8. Multiferroic Properties of (1- x )BiFeO 3 - x BaTiO 3 Lead-Free Ceramics
9. Phase Formation, Morphology and Electrical Properties of Lead-Free BNBLT-xBSN Ceramics Synthesized via the Solid-State Combustion Technique
10. Influence of Nb 5+ Substitution on the Phase Formation, Microstructure and Electrical Properties of SBNLT Ceramics Synthesized via the Solid-State Combustion Technique
11. Phase Formation, Microstructure and Electric Properties of Vanadium Doped Lead-Free BaTi 0.91 Sn 0.09 O 3 Ceramics
12. Silk Fibroin/Amino Acid Hybrid Organic Piezoelectric-Triboelectric Nanogenerator
13. Simple Method for Enhancing Performance of the Bacterial Cellulose-Based Triboelectric Nanogenerator by Adding Conductive Interlayer
14. Point Defects in Rare-Earth Perovskite Systems BaMO 3 ( M = Ce, Pr and Tb) on Dielectric and Magnetic Behaviors
15. Phase formation and electrical properties of SBNLT ceramics prepared via combustion technique
16. Phase formation, microstructure and electrical properties of Ba0.9Ca0.1TiO3 ceramics fabricated via the solid-state combustion technique
17. The tuning of temperature stability in ultralow loss (Ba/Sr) zirconate microwave dielectric
18. Phase formation, microstructure and electrical properties of BNT-SBT ceramics prepared via the solid-state combustion technique
19. Effect of substitution of (NiNb)4+ into B-sites on the phase formation, microstructure and electrical properties of Bi0.47Na0.47Ba0.06TiO3 ceramics
20. Effects of the phase content and grain size on the electrical and energy storage properties of lead-free BNBT ceramics with substituted La3+
21. Effect of Li2O addition on the phase formation, microstructure and electrical properties of 0.79Bi0.5Na0.5TiO3-0.18Bi0.5K0.5TiO3-0.03BiFeO3 ceramics
22. Phase evolution, microstructure and electrical response of KNNT ceramics with Li+ substitution and doping
23. Effect of Nb doping on the structural, optical, and photocatalytic properties of SrTiO3 nanopowder synthesized by sol-gel auto combustion technique
24. Effect 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
25. The Relationship of Phase Structure, Microstructure and Electrical Properties of BNT-BT-BST Ceramic
26. Crystal Structure, Microstructure and Electrical Properties of (Ba0.97Ca0.03)(Ti0.94-xMnxSn0.06)O3 Ceramics Synthesized by the Solid State Combustion Technique
27. Phase Evolution, Microstructure and Electrical Behavior of (Ba0.97Ca0.03)(Ti0.94-x/2Sn0.06-x/2Wx)O3 Ceramics Synthesized via the Solid-State Combustion Technique
28. The influences of Cs+ substitution and direct doping on the phase evolution, microstructure and electrical properties of KNNT ceramics
29. Dielectric and piezoelectric properties near the morphotropic phase boundary for 0.94BNT-0.06BT ceramics synthesized by the solid-state combustion technique
30. Effect of Fe2O3 Doping on Phase Formation, Microstructure, Dielectric and Magnetic Properties of BNT-BKT-KNN Ceramics Prepared by the Solid-State Combustion Technique
31. Synthesis and Characterization of KNN Modified BNT-ST Ceramics for Energy Storage Applications
32. Firing Temperature Effects on Phase Formation, Microstructure and Electrical Properties of BNKLT-Sm Ceramics
33. Phase Formation, Microstructure, Electric and Magnetic Properties of NiO Doping in (Ba0.85Ca0.15)(Ti0.90Zr0.10)O3 Ceramics
34. Sintering Temperature Effect on the Structural Phase, Microstructure and Electrical Properties of 0.92BNKLT-0.08BST Ceramics Prepared via the Solid State Combustion Method
35. Influence of Fe2O3 Doping Levels on the Phase Evolution, Microstructure, Electrical and Magnetic Properties of Ba0.97Ca0.03Ti0.94Sn0.06O3 Ceramics Synthesized via the Solid-State Combustion Technique
36. Effect of Al2O3 nano-particles on Ba(Zr0.95Ti0.05)O3 ceramics prepared by mixed oxide method
37. The Effect of Cu2+ Substitution on the Properties of BNKLT Lead-Free Ceramics Fabricated by the Solid-State Combustion Technique
38. Effect of BFCO Doping on Phase Structure, Microstructure, Electric and Magnetic Properties of BNKLT Ceramics Prepared by the Combustion Method
39. The Phase Structure, Microstructure, Dielectric and Magnetic Properties of 0.99(K0.45Na0.52Li0.03)(Nb0.94Sb0.06)O3-0.01BiScO3 Ceramics with NiO Doping
40. Influence of calcination temperature on phase formation and local structure of Co0.6Zn0.4Fe1.6Cr0.4O4 nanoparticles
41. Effect of the firing temperature on the phase formation, dielectric and ferromagnetic properties of CZFMO ceramics fabricated by the solid-state combustion technique
42. Phase transition, electrical properties and large strain response in lead-free (1-x-y)BNT-xBKT-yKNN ceramics
43. Effect of the firing temperatures on the phase formation, microstructure and electrical properties of BaTi0.91 Sn0.09O3 ceramics synthesized via the solid state combustion method
44. Structural study of (1-x)BNKLT-xBZT ceramics using XRD, Raman spectroscopy and XAS
45. Phase Formation, Dielectric, Ferroelectric and Magnetic Properties of Cr2O3 Doped (Ba0.85Ca0.15)(Ti0.90Zr0.10)O3 Ceramics
46. Low temperature fabrication of lead-free piezoelectric KNLNTS ceramics by the solid state combustion technique
47. Synthesis and electrical properties of BNT-BKT-KNN lead free piezoelectric solid solution prepared via the combustion technique
48. Enhancing piezoelectric of d33 coefficient of new (1−x)BNKLLT–xNKLNST lead-free ceramics synthesized by the solid state combustion technique
49. Impedance spectroscopy of lead-free (1-x-y)Bi0.5Na0.5TiO3–xBi0.5K0.5TiO3–yBi0.5Li0.5TiO3 piezoelectric ceramics
50. Effects of calcination temperature on the synthesis of [KNbO3]0.9– [BaNi0.5Nb0.5O3]0.1perovskite powders
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