Articles
  • Enhancing the optical, magnetic, and photoluminescence properties of CaAl2O4 powders by adding iron, nickel, copper, and zinc
  • Thanit Tangcharoen*

  • Department of Basic Science and Physical Education, Faculty of Science at Sriracha, Kasetsart University, Sriracha Campus, Chonburi 20230, 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. X. Liu, D. Yang, Z. Huang, J. Ye, S. Zhang, M. Fang, H. Ding, and Y. Liu, Ceram. Int. 41 (2015) 14727-14732.
  •  
  • 2. H.J. Liaw and W.C.J. Wei, J. Ceram. Process. Res. 6 (2005) 230-235.
  •  
  • 3. R. Salomão, V.L. Ferreira, I.R. Oliveira, A.D.V. Souza, and W.R. Correr, J. Eur. Ceram. Soc. 36 (2016) 4225-4235.
  •  
  • 4. W.J. Wei, S.D. Tze, and H.C. Liaw, J. Ceram. Process. Res. 6 (2005) 223-229.
  •  
  • 5. J.M. Fernández, I.N. Blasco, A. Duran, R. Sirera, and J.I. Alvarez, J. Environ. Manage. 140 (2014) 1-13.
  •  
  • 6. Y. Tian, X. Pan, H. Yu, and G. Tu, J. Alloys Compd. 670 (2016) 96-104.
  •  
  • 7. S. Yang, G. Xiao, D. Ding, Y. Ren, L. Lv, and P. Yang, Ceram. Int. 43 (2017) 15918-15926.
  •  
  • 8. N. Sakhare, S. Lunge, S. Rayalu, S. Bakardjiva, J. Subrt, S. Devotta, and N. Labhsetwar, Chem. Eng. J. 203 (2012) 406-414.
  •  
  • 9. P. Cheng, Y. Liu, L. Yang, Q. Ren, X. Wang, Y. Chi, H. Yuan, S. Wang, and Y.X. Ren, J. Environ. Chem. Eng. 11 (2023) 109377.
  •  
  • 10. S.H. Choi, N.H. Kim, Y.H. Yuna, and S.C. Choi, J. Ceram. Process. Res. 7 (2006) 62-65.
  •  
  • 11. A.A. Amer, H. El-Didamony, T.M. El-Sokkary, and M.I. Wahdan, Bol. Soc. Esp. Ceram. Vidrio 61 (2022) 98-106.
  •  
  • 12. M.N. Singh, A.G. Barua, and R.K. Gartia, Optik 228 (2021) 166151.
  •  
  • 13. R. Ianoş, Ceram. Int. 44 (2018) 21908-21913.
  •  
  • 14. C.A.G. Valles, T.M. Piters, M.B. Flores, R. Melendrez, P.S. Castillo, and V. Chernov, J. Lumin. 286 (2025) 121407.
  •  
  • 15. A. Fatima, S. Gouadria, A. Gassoumi, A.G. Al-Sehemi, and A. Kumar, Diamond Relat. Mater. 152 (2025) 111944.
  •  
  • 16. C.K. Chaithra, B.R.R. Krushna, M.M. Gowri, S.C. Sharma, A.S. Rajashekharaiah, C.T. Meyyammai, J. Inbanathan, K. Manjunatha, S.Y. Wu, and H. Nagabhushana, J. Lumin. 280 (2025) 121111.
  •  
  • 17. R. Cao, F. Zhang, C. Cao, X. Yu, A. Liang, S. Guo, and H. Xue, Opt. Mater. 38 (2014) 53-56.
  •  
  • 18. H. Dong, J. Ceram. Process. Res. 12 (2011) 704-707.
  •  
  • 19. B. Zhai, M.M. Chen, and Y.M. Huang, RSC Adv. 12 (2022) 31757-31768.
  •  
  • 20. E. Nkuna, M.R. Mhlongo, C. Dlamini, L.T. Melato, A. Bele, and V.M. Maphiri, Heliyon 10 (2024) e33274.
  •  
  • 21. N. El-Faramawy, A. Salah, and S. Farouk, Eur. Phys. J. Plus 139 (2024) 875.
  •  
  • 22. K.S.M. Kumar and L.J. Berchmans, Ceram. Int. 35 (2009) 1277–1280.
  •  
  • 23. A.A. Silva, D.M.A. Melo, T.R. Costa, R.L.B.A. Medeiros, G.C. Anjos, F.C. Carvalho, R.A.B.N. Santiago, A.A.S. Oliveira, and R.M. Braga, J. Energy Inst. 118 (2025) 101877.
  •  
  • 24. S.K. Sharma and M.M. Malik, Mater. Lett. 65 (2011) 1451-1453.
  •  
  • 25. T. Wen, J. Yu, L. Yuan, E. Jin, T. Liu, C. Tian, and Y. Zhou, Ceram. Int. 46 (2020) 4256-4264.
  •  
  • 26. C. Zhou, L. Wan, Z. Lou, S. Wu, S.A. Baig, and X. Xu, Environ. Sci. Pollut. Res. 30 (2023) 120030-120043.
  •  
  • 27. Y.S. Noh, H. Song, and D.J. Moon, Catal. Lett. 155 (2025) 247.
  •  
  • 28. C.J. Chang, T.F.M. Chang, T.H. Yang, W.K. Su, C.Y. Chen, M. Sone, and K.S. Lin, J. Taiwan Inst. Chem. Eng. 176 (2025) 106297.
  •  
  • 29. A. Sobha, J. Johnson, and K.P. Abhina, J. Alloys Compd. 1037 (2025) 182365.
  •  
  • 30. H.K.A. El-Hamid, E.M.A. Hamzawy, G.T. El-Bassyouni, and S. Mardin, Ceram. Int. 51 (2025) 23688-23700.
  •  
  • 31. S. Didde, R.S. Dubey, S.K. Panda, and G.S. Babu, ACS Omega 8 (2023) 38064-38071.
  •  
  • 32. D. Madej, M. Rajska, and A. Kruk, Ceram. Int. 46 (2020) 2373-2383.
  •  
  • 33. P. Sakthivel, C. Karthikeyan, T. Prakash, K. Maheshvaran, S.S. Alharthi, and K. Ramachandran, Ceram. Int. 51 (2025) 19000-19011.
  •  
  • 34. X. Pan, D. Zhang, Y. Wu, and H. Yu, Ceram. Int. 44 (2018) 13544-13550.
  •  
  • 35. M.N. Singh, L.R. Singh, and A.G. Barua, Radiat. Phys. Chem. 188 (2021) 109631.
  •  
  • 36. V. Singh, M. Yadav, and Y.C. Sharma, Fuel 203 (2017) 360-369.
  •  
  • 37. M.M. Ali, S.A. Habeeb, and M.H. Al-Maamori, Phys. Open 25 (2025) 100319.
  •  
  • 38. S.J. Hong, H.J. Mun, B.J. Kim, and Y.S. Kim, Micromachines 12 (2021) 1168.
  •  
  • 39. T.N. Vidaarth, S. Surendhiran, S. Savitha, K.S.G. Jagan, S. Swetha, M. Kathirselvam, R. Mohanraj, and A. Karthik, J. Alloys Compd. Commun. 8 (2025) 100121.
  •  
  • 40. N.J. Tamanna, M.S. Hossain, N.M. Bahadur, and S. Ahmed, Results Chem. 7 (2024) 101313.
  •  
  • 41. K. Mahi, G. Benabdellah, K.A.Z. Ouari, and M. Trari, Indian J. Phys. 98 (2024) 4333-4339.
  •  
  • 42. T.S. Mabelane, L.F. Koao, S.V. Motloung, T.E. Motaung, R.E. Kroon, and M.R. Mhlongo, J. Mol. Struct. 1260 (2022) 132751.
  •  
  • 43. C. Jagadeeshwaran, K. Madhan, and R. Murugaraj, J. Mater. Sci.:Mater. Electron. 29 (2018) 18923-18934.
  •  
  • 44. Y. Deng, Y. Gao, F. Zhu, B. Zhu, L. Huang, and J. Qiu, Ceram. Int. 50 (2024) 12319-12325.
  •  
  • 45. A.N. Kiryakov, A.F. Zatsepin, A.S. Vagapov, B.L. Oksengendler, and N.V. Gavrilov, J. Phys. Chem. Solids 170 (2022) 110966.
  •  
  • 46. A.N. Kiryakov, A.F. Zatsepin, and V.V. Osipov, J. Lumin. 239 (2021) 118390.
  •  
  • 47. S.M. Yakout and A.M. El-Sayed, Adv. Powder Technol. 30 (2019) 2841-2850.
  •  
  • 48. J. Tauc, R. Grigorovici, and A. Vancu, Phys. Status Solidi 15 (1966) 627-637.
  •  
  • 49. R. Ahlawat, B. Goswami, N. Rani, M. Chauhan, and G. Rani, Appl. Nanosci. 13 (2023) 6151-6164.
  •  
  • 50. D.M. Mamand, S.S. Khasraw, R.T. Abdulwahid, P.A. Mohammed, A. Hassanzadeh, O.G. Abdullah, D.S. Muhammad, S.B. Aziz, and J. Hassan, J. Sci.:Adv. Mater. Devices 10 (2025) 100937.
  •  
  • 51. R. Ahlawat, B. Goswami, N. Jangra, B. Mohan, and G. Rani, Phys. Scr. 99 (2024) 1059b1.
  •  
  • 52. D. Gao, Z. Zhang, Q. Xu, J. Zhang, Z. Yan, J. Yao, and D. Xue, Appl. Phys. Lett. 104 (2014) 022406.
  •  
  • 53. R.M. Khattab, H.E.H. Sadek, and A.A. Gaber, Ceram. Int. 43 (2017) 234-243.
  •  
  • 54. L.J. Collazos, D.R. Saldanha, G.P. Zamudio, R. Dutra, R.L. Sommer, and D.E.G. Chavez, J. Magn. Magn. Mater. 630 (2025) 173402.
  •  
  • 55. E. Uyanga, B. Enkhmend, S. Kobayashi, T.Y. Kiseleva, N. Jargalan, and D. Sangaa, Mater. Today Commun. 44 (2025) 111996.
  •  
  • 56. V. Seeman, E. Feldbach, T. Kärner, A. Maaroos, N.M. Ulmane, A.I. Popov, E. Shablonin, E. Vasil'chenko, and A. Lushchik, Opt. Mater. 91 (2019) 42-49.
  •  
  • 57. C. Srinivas, S.S. Meena, P. Bhatt, E.R. Kumar, V. Rajendran, P. Balraju, and D.L. Sastry, Inorg. Chem. Commun. 179 (2025) 114738.
  •  
  • 58. A.C. Heredia, M.I. Oliva, U. Agú, C.I. Zandalazini, S.G. Marchetti, E.R. Herrero, and M.E. Crivello, J. Magn. Magn. Mater. 342 (2013) 38-46.
  •  
  • 59. K. Syrek, E. Wierzbicka, M. Zych, D. Piecha, M. Szczerba, M.S. Mroz, J.K. Kołodziej, and G.D. Sulka, J. Photochem. Photobiol., C 62 (2025) 100681.
  •  
  • 60. S.H. Yang, C.C. Ho, Y.Y. Tsai, and S.M. Liao, Opt. Mater. 167 (2025) 117316.
  •  
  • 61. B. Zhai and Y.M. Huang, Physica B 646 (2022) 414284.
  •  
  • 62. F. Kermani, S. Mollazadeh, and J.V. Khaki, Ceram. Int. 45 (2019) 13496-13501.
  •  
  • 63. L. Zhang, C. Wang, T. Zhang, W. Jin, C. Ding, and Z. Wang, Mater. Today Commun. 44 (2025) 111859.
  •  
  • 64. Y. Kazarinov, J.W. Tomm, A. Prokhorov, R. Minikayev, J.Z. Domagala, J. Gabrusenoks, A.I. Popov, I. Shcherbakov, S. Orel, and K. Lamonova, J. Lumin. 277 (2025) 120970.
  •  
  • 65. R. Panda, M. Behera, R.A. Kumar, and D. Joshi, Mater. Sci. Eng., B 299 (2024) 117006.
  •  
  • 66. L. Museur, E. Feldbach, Y. Smortsova, A. Kotlov, and A. Kanaev, J. Lumin. 279 (2025) 121029.
  •  
  • 67. L. Pan, S. Sholom, S.W.S. McKeever, and L.G. Jacobsohn, J. Alloys Compd. 880 (2021) 160503.
  •  
  • 68. H. Zeng, G. Duan, Y. Li, S. Yang, X. Xu, and W. Cai, Adv. Funct. Mater. 20 (2010) 561-572.
  •  
  • 69. Y.S. Kim and C.H. Park, Phys. Rev. Lett. 102 (2009) 086403.
  •  
  • 70. G.H. Sun, Q.L. Zhang, J.Q. Luo, L.C. Li, Z. Deng, and R.G. Zhang, J. Lumin. 234 (2021) 117956.
  •  
  • 71. V. Babin, V. Hreb, A. Krasnikov, V. Stadnik, L. Vasylechko, and S. Zazubovich, Mater. Res. Bull. 193 (2026) 113710.
  •  
  • 72. B.M. Mothudi, O.M. Ntwaeaborwa, J.R. Botha, and H.C. Swart, Physica B 404 (2009) 4440-4444.
  •  
  • 73. B. Zhai and Y.M. Huang, Europhys. Lett. 127 (2019) 17001.
  •  
  • 74. V.N. Kuzovkov, E.A. Kotomin, A. Lushchik, A.I. Popov, and E. Shablonin, Opt. Mater. 147 (2024) 114733.
  •  
  • 75. E.R. Wang, T.C. Huang, Y.H. Chang, Y.H. Wu, S.W. Ke, C.H. Chang, C.Y. Lee, B.Y. Chen, G.C. Yin, M.T. Tang, and B.H. Lin, Opt. Mater. 142 (2023) 114146.
  •  
  • 76. V. Skuratov, O. Korolik, M. Mamatova, J. O’Connell, N. Kirilkin, A. Dauletbekova, and A. Akilbekov, J. Lumin. 283 (2025) 121259.
  •  

This Article

  • 2026; 27(1): 130-140

    Published on Feb 28, 2026

  • 10.36410/jcpr.2026.27.1.130
  • Received on Nov 5, 2025
  • Revised on Jan 9, 2026
  • Accepted on Jan 26, 2026

Correspondence to

  • Thanit Tangcharoen
  • Department of Basic Science and Physical Education, Faculty of Science at Sriracha, Kasetsart University, Sriracha Campus, Chonburi 20230, Thailand
    Tel : +66-38-354580-4 ext. 663013

  • E-mail: sfscitnt@ku.ac.th