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Department of Physics

Naresuan University

Asst. Prof. Dr. Sasipohn Prasertpalichat

Sasipohn Prasertpalichat profile photo
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1Novel complex-perovskite NaNbO3− Bi (Li1/3Hf2/3) O3 lead-free ceramics with improved energy-storage performance and reduced leakage current 20250N/AN/A
2High energy-storage performance under low electric fields and enhanced electric-field-induced strain in Nb5+ doped BNT−BT lead-free piezoceramics 20250N/AN/A
3Improved Dielectric, Magnetic, and Multiferroic Properties of (Bi 0.5 Na 0.5) 0.7 La 0.3 (Ti 0.7 Fe 0.3) O 3 Ceramics Synthesis by the Solid-State Combustion Technique 20240Q2N/A
4Anupong Luangpangai1, Thanwarat Jirattitikarn1, Widchaya Somsri1, Aurawan Rittidech2 20240Q1Q1
5Enhanced dielectric and ferroelectric properties near the morphotropic phase boundary in BNBT-BSN ceramics prepared by the solid-state combustion technique 20240Q1Q1
6Phase formation, microstructure, and electrical properties of lead-free BNBLT-CZ ceramics synthesized via the solid-state combustion technique 20240Q2Q2
7Dielectric and Improved Energy-Storage Properties in A-Site Nd3+ Doped Lead-Free 0.88NaNbO3-0.12Sr0.7Bi0.2TiO3 Ceramics 20230Q3Q4
8Effect of the Firing Temperatures on the Phase Evolution and Electrical Properties of 0.85 [0.94 Bi0. 5Na0. 5TiO3-0.06 BaTiO3]-0.15 [Na0. 73Bi0. 09NbO3] Ceramics Synthesized via the Solid-State Combustion Method 20231Q3Q4
9Multiferroic Properties of Lead-Free (1− x)(K0. 44Na0. 52Li0. 04)(Nb0. 84Ta0. 10Sb0. 06) O3− x Bi0. 8Ba0. 2FeO3 Ceramics Prepared via the Solid-State Combustion Technique 20231Q2Q2
10Electric and Magnetic Properties of Bi0.80Ba0.20FeO3‐Doped Ba0.85Ca0.15Ti0.90Zr0.10O3 Ceramics Prepared via the Solid‐State Combustion Technique 20231N/AQ3
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