Articles
  • Properties of nickel ferrite ceramics obtained by combustion synthesis and two-step sintering, and their detection of LPG in air
  • Nihafini Kasor, Methee Promsawat and Tawat Chanadee*

  • Materials Science Program, Division of Physical Science, Faculty of Science, Prince of Songkla University (PSU), Hat Yai, Songkhla 90110, Thailand

  • This article is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

References
  • 1. Z.K. Karakaş, R. Boncukçuoğlu, and I.H. Karakaş, J. Phys. Conf. Ser. 707 (2016) 1-10.
  •  
  • 2. W.F. Smith and J. Hashemi, in “Foundations of Materials Science and Engineering”, 4th ed. (McGrawHill, 2008) p. 725.
  •  
  • 3. R. Jothiramalingam, H. Al-Lohedan, and A. Karami, J. Ovonic Res. 19[5] (2023) 525-534.
  •  
  • 4. B. Biswas, M.F. Ahmed, M.L. Rahman, J. Khanam, M.H.R. Bhuiyan, and N. Sharmin, Heliyon. 10 (2024) 1-10.
  •  
  • 5. K. Vepulanont, S. Sa-Nguanprang, S. Buapoon, T. Bunluesak, P. Suebsom, K. Chaisong, N. Udomsri, N. Karnchana, D. Laokae, and T. Chanadee, J. Asian Ceram. Soc. 9[2] (2021) 639-651.
  •  
  • 6. A.B. Kulkarni and S.N. Mathad, Sci. Sinter. 53 (2021) 407-418.
  •  
  • 7. P. Intaphong, N. Radklaochotsatain, W. Somraksa, S. Musigawon, N. Kongthong, R. Kaemkit, S. Samadoloh, and T. Chanadee, Curr. Appl. Phys. 19 (2019) 548-555.
  •  
  • 8. T. Isobe, A. Ooyama, M. Shimizu, and A. Nakajima, Ceram. Inter. 38 (2012) 787-793.
  •  
  • 9. P. Dipak, D.C. Tiwari, A. Samadhiya, N. Kumar, T. Biswajit, P.A. Singh, and R.K. Tiwari, J Mater Sci: Mater Electron 31 (2020) 22512-22521.
  •  
  • 10. N. Sabate, I. Gracia, J. Santander, J. Cerda, A. Vila, J.R. Morante, and C. Cane, Sens. Actuators B-Chem. 107 (2005) 688-694.
  •  
  • 11. S. Robbiani, B.J. Lotesoriere, R.L. Dellacà, and L. Capelli, Chemosensors. 11[514] (2023) 1-37.
  •  
  • 12. H. Mahdavi, S. Rahbarpour, R. Goldoust, S.M. Hosseini-Golgoo, and H. Jamaati, IEEE Sens. J. 21[9] (2021) 21612-21621.
  •  
  • 13. Y. Li, N. Chen, D. Deng, X. Xing, X. Xiao, and Y. Wang, Sens. Actuators B-Chem. 238 (2017) 264-273.
  •  
  • 14. B.A. Darmawan, J.G. Fisher, D.T. Trung, K. Sakthiabirami, and S.W. Park, Materials. 13[8] (2020) 1-20.
  •  
  • 15. N.J. Lóh, L. Simão, C.A. Faller, A. De Noni, and O.R.K. Montedo, Ceram. Inter. 42[11] (2016) 12556-12572.
  •  
  • 16. T. Chanadee, Int. J. Self-Propagating High-Temp. Synth. 26[1] (2017) 40-43.
  •  
  • 17. S. Sri‑o‑sot, K. Vepulanont, C. Kamkit, T. Srichumpong, and T. Chanadee, J. Aust. Ceram. Soc. 58 (2022) 1081-1093.
  •  
  • 18. N. Iftimie, E. Rezlescua, P.D. Popaa, and N. Rezlescu, J. Optoelectron. Adv. M. 8[3] (2006) 1016-1018.
  •  
  • 19. Z. Li, Y. Huang, S. Zhang, W. Chen, Z. Kuang, D. Ao, W. Liu, and Y. Fu, J. Hazard Mater. 300 (2015) 167-174.
  •  
  • 20. Z. Wu, Z. Li, H. Li, M. Sun, S. Han, C. Cai, W. Shen, and Y. Fu, ACS Appl. Mater. Interfaces. 11 (2019) 12761-12769.
  •  
  • 21. P.V. Shinde and C.S. Rout, Nanoscale Adv. 3 (2021) 1551-1568.
  •  
  • 22. M. Thommes, K. Kaneko, A.V. Neimark, J.P. Olivier, F. Rodriguez-Reinoso, J. Rouquerol, and K.S.W. Sing, Pure Appl. Chem. 87[9-10] (2015) 1051-1069.
  •  
  • 23. S. Ahmed and S.K. Sinha, Environ. Sci. Pollut. Res. 30 (2022) 24975-24986.
  •  
  • 24. F.J. Meng, R.F. Xin, and S.X. Li. Materials. 16[263] (2023) 1-21.
  •  
  • 25. B. Saruhan, R.L. Fomekong, and S. Nahirniak, Front. Sens. 2[657931] (2021) 1-24.
  •  
  • 26. P. Raju and Q. Li, J. Electrochem. Soc. 169[057518] (2022) 1-37.
  •  
  • 27. S. Choopun, N. Hongsith, and E. Wongrat, Metal-oxide nanowires for gas sensors, in “Nanowires - Recent Advances”. Eds. by X. Peng. (2012) 1-24.
  •  
  • 28. L. Satyanarayana, K.M. Reddy, and S.V. Manorama, Mater. Chem. Phys. 82 (2003) 21-26.
  •  
  • 29. C. Wang, L. Yin, L. Zhang, D. Xiang, and R. Gao, Sensors. 10 (2010) 2088-2106.
  •  
  • 30. V. Jeseentharani, M. George, B. Jeyaraj, A. Dayalan, and K.S. Nagaraja, J. Exp. Nanosci. 8[3] (2013) 358-370.
  •  
  • 31. P.B. Koli, K.H. Kapadnis, and U.G. Deshpande, J. Nanostruct. Chem. 9 (2019) 95-110.
  •  
  • 32. J.H. Hwang and K.T. Lee, J. Ceram. Process. Res. 21[2] (2020) 148-156.
  •  
  • 33. R. Zhang, C. Qin, H. Bala, Y. Wang, and J. Cao, Nanomaterials. 13 (2023) 1-46.
  •  
  • 34. J. Cao, Z. Zhang, S. Wang, Z. Sun, R. Thakur, J. Li, Y. Wang, X. Xu, Z. Ye, and H. Zhang, ACS Sens. 9[9] (2024) 4777-4787.
  •  
  • 35. N. Ahmad, P. Kanjariya, G.P. Priya, A. Kumar, R. Thakur, RSK. Sharma, M. Kumari, S. Kaur, and M.K. Mishra, ACS Omega. 10 (2025) 13780-13796.
  •  

This Article

  • 2025; 26(5): 787-795

    Published on Oct 31, 2025

  • 10.36410/jcpr.2025.26.5.787
  • Received on Jul 30, 2025
  • Revised on Sep 15, 2025
  • Accepted on Oct 2, 2025

Correspondence to

  • Tawat Chanadee
  • Materials Science Program, Division of Physical Science, Faculty of Science, Prince of Songkla University (PSU), Hat Yai, Songkhla 90110, Thailand
    Tel : +66 (0) 74 288 022 Fax: +66 (0) 74 288 035

  • E-mail: tawat.ch@psu.ac.th, chanadee.mst@gmail.com