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Dr.
Klatnatee Vepulanont
Lecturer
UKPSF MENTOR
- klatnatee.v@psu.ac.th
- 8405
- Chemistry
- Division of Physical Science

Education
Graduated Year
Degree
Country
2011
Ph.D. University of Sheffield
United Kingdom
2005
M.Phil. (Materials Science & Engineering) University of Sheffield
United Kingdom
1999
M.Sc. (Industrial Chemistry) King Mongkut Institute of Technology. North Bangkok Campus
Thailand
1997
B.Sc. (Industrial Chemistry) King Mongkut Institute of Technology. North Bangkok Campus
Thailand
Publication
From Scopus
Author ID: 57222987950
1
2024. Titanium Carbide Powder from Magnesiothermic Combustion of Leucoxene: Obtained Particulate Nickel-Coated for Use as MMCs Reinforcement. International Journal of Self Propagating High Temperature Synthesis 33(3): 228-236. (cited 0 times)
2
2024. CaTiO3-hydroxyapatite bioceramic composite: Synthesis of reactant powders from waste cockle shell, sintering, characterization and investigation of physical, mechanical and in-vitro biological properties. Journal of the Australian Ceramic Society 60(1): 65-87. (cited 2 times)
3
2022. Fabrication, characterization, and properties of hydroxyapatite ceramics derived from cockle shell. Journal of the Australian Ceramic Society 58(4): 1081-1093. (cited 4 times)
4
2021. Nickel ferrite ceramics: combustion synthesis, sintering, characterization, and magnetic and electrical properties. Journal of Asian Ceramic Societies 9(2): 639-651. (cited 21 times)
Content provided by Scopus.
Publication
From the Faculty of Science
1
Sri-o-sot, S., Vepulanont, K., Pitakpornpreecha, T., Aroonkesorn, A., Charoenpanich, A., Srichumpong, T., & Chanadee, T. (2024). CaTiO3-hydroxyapatite bioceramic composite: Synthesis of reactant powders from waste cockle shell, sintering, characterization and investigation of physical, mechanical and in-vitro biological properties (SCIE). Journal Of The Australian Ceramic Society, 60(1), 65 - 87.
2
Chanadee, T., & Vepulanont, K. (2024). Titanium Carbide Powder from Magnesiothermic Combustion of Leucoxene: Obtained Particulate Nickel-Coated for Use as MMCs Reinforcement (ESCI). International Journal Of Self-propagating High-temperature Synthesis, 33(3), 228 - 236.
3
Sri-o-sot, S., Vepulanont, K., Pitakpornpreecha, T., Aroonkesorn, A., Charoenpanich, A., Srichumpong, T., & Chanadee, T. (2023). Accepted-CaTiO3‑hydroxyapatite bioceramic composite: Synthesis of reactant
powders from waste cockle shell, sintering, characterization
and investigation of physical, mechanical and in‑vitro biological
properties (SCIE). Journal Of The Australian Ceramic Society, 00(00), 00.
4
Sri-o-sot, S., Vepulanont, K., Kamkit, C., Srichumpong, T., & Chanadee, T. (2022). Fabrication, characterization, and properties of hydroxyapatite ceramics derived from cockle shell (SCIE). Journal Of The Australian Ceramic Society, 58(4), 1081 - 1093.
5
Vepulanont, K., Sa-nguanprang, S., Buapoon, S., Bunluesak, T., Suebsom, P., Chaisong, K., Udomsri, N., Karnchana, N., Laokae, D., & Chanadee, T. (2021). Nickel ferrite ceramics: combustion synthesis, sintering, characterization, and magnetic and electrical properties (SCIE). Journal Of Asian Ceramic Societies, 9(2), 639-651.