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Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3

Year 2018, Volume: 33 Issue: 1, 143 - 150, 15.03.2018
https://doi.org/10.21605/cukurovaummfd.420692

Abstract

In this research, the effect of Eu doping on the structural, magnetic and magnetocaloric properties in La0.85Ag0.15MnO3 sample synthesized by sol-gel technique has been studied. The structural analysis show that crystal structure of the sample is found as rhombohedral being the same as undoped sample. But, the average particle size decreases when Eu is doped in the main structure. In the magnetic analysis, a magnetic transition is observed from ferromagnetic to paramagnetic phase around 192 K. The maximum magnetic entropy change (−ΔSM)max and relative cooling power (RCP) values were found as 2.78 J/kgK and 142.31 J/kg under 5 T field change.

References

  • 1. Atalay, S., Kolat, V.S., Gencer, H., Adiguzel, H.I., 2006. Magnetic Entropy-change in La0.67−xBixCa0.33MnO3 Compound. Journal of Magnetism and Magnetic Materials, 305 (2), 452-456.
  • 2. Phan, M.H., Yu, S.C., 2007. Review of the Magnetocaloric Effect in Manganite Materials. Journal of Magnetism and Magnetic Materials, 308 (2), 325-340.
  • 3. Sande, P., Hueso, L.E., Miguéns, D.R., Rivas, J., Rivadulla, F., López-Quintela, M.A., 2001. Large Magnetocaloric Effect in Manganites with Charge Order. Applied Phycis Letters, 79 (13), 2040-2042.
  • 4. Chau, N., Nhat, H.N., Luong, N.H., Minh, D.L., Tho, N.D., Chau, N.N., 2003. Structure, Magnetic, Magnetocaloric and Magnetoresistance Properties of La1−xPbxMnO3 Perovskite. Physica B: Condensed Matter, 327 (2), 270-278.
  • 5. Kolat, V.S., Izgi, T., Kaya, A.O., Bayri, N., Gencer, H., Atalay, S., 2010. Metamagnetic Transition and Magnetocaloric Effect in Charge-ordered Pr0.68Ca0.32−xSrxMnO3 (x=0, 0.1, 0.18, 0.26 and 0.32) compounds. Journal of Magnetism and Magnetic Materials, 322 (4), 427-433.
  • 6. Phan, M.H., Tian, S.B., Hoang, D.Q., Yu, S.C., Nguyen, C., Ulyanov, A.N., 2003. Large Magnetic-entropy Change Above 300K in CMR Materials. Journal of Magnetism and Magnetic Materials, 258-259 (Supplement C), 309-311.
  • 7. Rebello, A., Naik, V.B., Mahendiran, R., 2011. Large Reversible Magnetocaloric Effect in La0.7-xPrxCa0.3MnO3. Journal of Applied Physics, 110 (1), 013906.
  • 8. Wang, Z., Xu, Q., Ni, G., Zhang, H., 2011. Magnetic Entropy Change in Perovskite Manganites La0.6Pr0.1Pb0.3MnO3 With Double Metal–insulator Peaks. Physica B: Condensed Matter, 406 (23), 4333-4337.
  • 9. Zhong, W., Chen, W., Au, C.T., Du, Y.W., 2003. Dependence of the Magnetocaloric Effect on Oxygen Stoichiometry in Polycrystalline La2/3Ba1/3MnO3–δ. Journal of Magnetism and Magnetic Materials, 261 (1), 238-243.
  • 10. Reis, M.S., Amaral, V.S., Araújo, J.P., Tavares, P.B., Gomes, A.M., Oliveira, I.S., 2005. Magnetic Entropy Change of Pr1-xCaxMnO3 Manganites (0.2<x<0.95). Physica Review B, 71 (14), 144413.
  • 11. Bejar, M., Dhahri, E., Hlil, E.K., Heniti, S., 2007. Influence of A-site Cation Size-disorder on Structural, Magnetic and Magnetocaloric Properties of La0.7Ca0.3−xKxMnO3 Compounds. Journal of Alloys and Compounds, 440 (1), 36-42.
  • 12. Aliev, A.M., Gamzatov, A.G., Batdalov, A.B., Mankevich, A.S., Korsakov, I.E., 2011. Structure and Magnetocaloric Properties of La1−xKxMnO3 Manganites. Physica B: Condensed Matter, 406 (4), 885-889.
  • 13. Dayal, V., Punith Kumar, V., 2014. Investigation of Complex Magnetic State in La0.8Bi0.2MnO3. Journal of Magnetism and Magnetic Materials, 361 (Supplement C), 212-218.
  • 14. Ayaş, A.O., Akyol, M., Ekicibil, A., 2016. Structural and Magnetic Properties with Large Reversible Magnetocaloric Effect in (La1-xPrx)0.85Ag0.15MnO3 (0.0≤x≤0.5) Compounds. Philosophical Magazine, 96 (10), 922-937.
  • 15. Ayas, A.O., 2017. (La0.9Gd0.1)0.85Ag0.15MnO3 Manyetik Soğutucu Malzemede Kısmi Gd Değişiminin Yapısal, Manyetik ve Manyetik Soğutma Özellikleri Üzerine Etkisi. Fırat Üniversitesi Mühendislik Bilimleri Dergisi, 29 (2), 155-162.
  • 16. Tang, T., Gu, K.M., Cao, Q.Q., Wang, D.H., Zhang, S.Y., Du, Y.W., 2000. Magnetocaloric Properties of Ag-substituted Perovskite-type Manganites. Journal of Magnetism and Magnetic Materials 222 (1), 110-114.
  • 17. Kamilov, I.K., Gamzatov, A.G., Aliev, A.M., Batdalov, A.B., Aliverdiev, A.A., Sh, B.A., 2007. Magnetocaloric Effect in La1− xAgy MnO3 (y≤x): Direct and İndirect Measurements. Journal of Physica D: Applied Physics, 40 (15), 4413.
  • 18. Muñoz, A., Alonso, J.A., Martínez-Lope, M.J., Pomjakushin, V., André, G., 2012. On the Magnetic Structure of PrMn2O5: a Neutron Diffraction Study. Journal of Physics: Condensed Matter, 24 (7), 076003.
  • 19. Shannon, R.D., 1976. Revised Effective Ionic Radii and Systematic Studies of Interatomic Distances in Halides and Chalcogenides. Acta Crystallographica Section A, 32 (5), 751-767.
  • 20. Koubaa, M., Cheikh-Rouhou Koubaa, W., Cheikhrouhou, A., 2009. Magnetocaloric Effect in Polycrystalline La0.65Ba0.3M0.05MnO3 (M=Na, Ag, K) Manganites. Journal of Magnetism and Magnetic Materials, 321(21), 3578-3584.
  • 21. M’nassri, R., Cheikhrouhou-Koubaa, W., Koubaa, M., Boudjada, N., Cheikhrouhou, A., 2011. Magnetic and Magnetocaloric Properties of Pr0.6−xEuxSr0.4MnO3 Manganese Oxides. Solid State Communications, 151(21), 1579-1582.
  • 22. Chen, W., Zhong, W., Hou, D.L., Gao, R.W., Feng, W.C., Zhu, M.G., 2002. Preparation and Magnetocaloric Effect of Self-doped La0.8−xNa0.2xMnO3+δ Polycrystal. Journal of Physics: Condensed Matter, 14(45), 11889.
  • 23. Morrish, A.H., 1965. The Physical Principles of Magnetism. New York: Wiley.
  • 24. Dudric, R., Goga, F., Mican, S., Tetean, R., 2013. Effects of Substitution of Pr, Nd, and Sm for La on the Magnetic Properties and Magnetocaloric Effect of La1.4Ca1.6Mn2O7. Journal of Alloys and Compounds, 553 (Supplement C), 129-134.
  • 25. Phan, T.L., Ho, T.A., Thang, P.D., Tran, Q.T., Thanh, T.D., Phuc, N.X., 2014. Critical Behavior of Y-doped Nd0.7Sr0.3MnO3 Manganites Exhibiting the Tricritical Point and Large Magnetocaloric Effect. Journal of Alloys and Compounds, 615(Supplement C), 937-945.

La0.85Ag0.15MnO3 Yapısına Eu Katkılamasının Yapısal, Manyetik ve Manyetokalorik Özelliklere Etkisi

Year 2018, Volume: 33 Issue: 1, 143 - 150, 15.03.2018
https://doi.org/10.21605/cukurovaummfd.420692

Abstract

Bu araştırmada, sol-jel tekniği ile sentezlenen La0.85Ag0.15MnO3 numunesine Eu katkılamasının yapısal, manyetik ve manyetokalorik özelliklere etkisi çalışılmıştır. Yapısal analizler, örneğin; kristal yapısının katkısı örnek ile aynı olan rombohedral yapıda olduğunu göstermiştir. Fakat ortalama parçacık boyutu, Eu katkılaması gerçekleştirildiğinde ana yapıya göre azalmaktadır. Yaklaşık 192 K’de feromanyetik-paramanyetik faz geçişinin olduğu manyetik analizlerden gözlenmiştir. Maksimum manyetik entropi değişimi (-ΔSM)max ve göreceli soğutma gücü (RCP) değerleri 5 T alan değişimi altında sırasıyla 2,78 J/kgK ve 142,31 J/kg olarak bulunmuştur.

References

  • 1. Atalay, S., Kolat, V.S., Gencer, H., Adiguzel, H.I., 2006. Magnetic Entropy-change in La0.67−xBixCa0.33MnO3 Compound. Journal of Magnetism and Magnetic Materials, 305 (2), 452-456.
  • 2. Phan, M.H., Yu, S.C., 2007. Review of the Magnetocaloric Effect in Manganite Materials. Journal of Magnetism and Magnetic Materials, 308 (2), 325-340.
  • 3. Sande, P., Hueso, L.E., Miguéns, D.R., Rivas, J., Rivadulla, F., López-Quintela, M.A., 2001. Large Magnetocaloric Effect in Manganites with Charge Order. Applied Phycis Letters, 79 (13), 2040-2042.
  • 4. Chau, N., Nhat, H.N., Luong, N.H., Minh, D.L., Tho, N.D., Chau, N.N., 2003. Structure, Magnetic, Magnetocaloric and Magnetoresistance Properties of La1−xPbxMnO3 Perovskite. Physica B: Condensed Matter, 327 (2), 270-278.
  • 5. Kolat, V.S., Izgi, T., Kaya, A.O., Bayri, N., Gencer, H., Atalay, S., 2010. Metamagnetic Transition and Magnetocaloric Effect in Charge-ordered Pr0.68Ca0.32−xSrxMnO3 (x=0, 0.1, 0.18, 0.26 and 0.32) compounds. Journal of Magnetism and Magnetic Materials, 322 (4), 427-433.
  • 6. Phan, M.H., Tian, S.B., Hoang, D.Q., Yu, S.C., Nguyen, C., Ulyanov, A.N., 2003. Large Magnetic-entropy Change Above 300K in CMR Materials. Journal of Magnetism and Magnetic Materials, 258-259 (Supplement C), 309-311.
  • 7. Rebello, A., Naik, V.B., Mahendiran, R., 2011. Large Reversible Magnetocaloric Effect in La0.7-xPrxCa0.3MnO3. Journal of Applied Physics, 110 (1), 013906.
  • 8. Wang, Z., Xu, Q., Ni, G., Zhang, H., 2011. Magnetic Entropy Change in Perovskite Manganites La0.6Pr0.1Pb0.3MnO3 With Double Metal–insulator Peaks. Physica B: Condensed Matter, 406 (23), 4333-4337.
  • 9. Zhong, W., Chen, W., Au, C.T., Du, Y.W., 2003. Dependence of the Magnetocaloric Effect on Oxygen Stoichiometry in Polycrystalline La2/3Ba1/3MnO3–δ. Journal of Magnetism and Magnetic Materials, 261 (1), 238-243.
  • 10. Reis, M.S., Amaral, V.S., Araújo, J.P., Tavares, P.B., Gomes, A.M., Oliveira, I.S., 2005. Magnetic Entropy Change of Pr1-xCaxMnO3 Manganites (0.2<x<0.95). Physica Review B, 71 (14), 144413.
  • 11. Bejar, M., Dhahri, E., Hlil, E.K., Heniti, S., 2007. Influence of A-site Cation Size-disorder on Structural, Magnetic and Magnetocaloric Properties of La0.7Ca0.3−xKxMnO3 Compounds. Journal of Alloys and Compounds, 440 (1), 36-42.
  • 12. Aliev, A.M., Gamzatov, A.G., Batdalov, A.B., Mankevich, A.S., Korsakov, I.E., 2011. Structure and Magnetocaloric Properties of La1−xKxMnO3 Manganites. Physica B: Condensed Matter, 406 (4), 885-889.
  • 13. Dayal, V., Punith Kumar, V., 2014. Investigation of Complex Magnetic State in La0.8Bi0.2MnO3. Journal of Magnetism and Magnetic Materials, 361 (Supplement C), 212-218.
  • 14. Ayaş, A.O., Akyol, M., Ekicibil, A., 2016. Structural and Magnetic Properties with Large Reversible Magnetocaloric Effect in (La1-xPrx)0.85Ag0.15MnO3 (0.0≤x≤0.5) Compounds. Philosophical Magazine, 96 (10), 922-937.
  • 15. Ayas, A.O., 2017. (La0.9Gd0.1)0.85Ag0.15MnO3 Manyetik Soğutucu Malzemede Kısmi Gd Değişiminin Yapısal, Manyetik ve Manyetik Soğutma Özellikleri Üzerine Etkisi. Fırat Üniversitesi Mühendislik Bilimleri Dergisi, 29 (2), 155-162.
  • 16. Tang, T., Gu, K.M., Cao, Q.Q., Wang, D.H., Zhang, S.Y., Du, Y.W., 2000. Magnetocaloric Properties of Ag-substituted Perovskite-type Manganites. Journal of Magnetism and Magnetic Materials 222 (1), 110-114.
  • 17. Kamilov, I.K., Gamzatov, A.G., Aliev, A.M., Batdalov, A.B., Aliverdiev, A.A., Sh, B.A., 2007. Magnetocaloric Effect in La1− xAgy MnO3 (y≤x): Direct and İndirect Measurements. Journal of Physica D: Applied Physics, 40 (15), 4413.
  • 18. Muñoz, A., Alonso, J.A., Martínez-Lope, M.J., Pomjakushin, V., André, G., 2012. On the Magnetic Structure of PrMn2O5: a Neutron Diffraction Study. Journal of Physics: Condensed Matter, 24 (7), 076003.
  • 19. Shannon, R.D., 1976. Revised Effective Ionic Radii and Systematic Studies of Interatomic Distances in Halides and Chalcogenides. Acta Crystallographica Section A, 32 (5), 751-767.
  • 20. Koubaa, M., Cheikh-Rouhou Koubaa, W., Cheikhrouhou, A., 2009. Magnetocaloric Effect in Polycrystalline La0.65Ba0.3M0.05MnO3 (M=Na, Ag, K) Manganites. Journal of Magnetism and Magnetic Materials, 321(21), 3578-3584.
  • 21. M’nassri, R., Cheikhrouhou-Koubaa, W., Koubaa, M., Boudjada, N., Cheikhrouhou, A., 2011. Magnetic and Magnetocaloric Properties of Pr0.6−xEuxSr0.4MnO3 Manganese Oxides. Solid State Communications, 151(21), 1579-1582.
  • 22. Chen, W., Zhong, W., Hou, D.L., Gao, R.W., Feng, W.C., Zhu, M.G., 2002. Preparation and Magnetocaloric Effect of Self-doped La0.8−xNa0.2xMnO3+δ Polycrystal. Journal of Physics: Condensed Matter, 14(45), 11889.
  • 23. Morrish, A.H., 1965. The Physical Principles of Magnetism. New York: Wiley.
  • 24. Dudric, R., Goga, F., Mican, S., Tetean, R., 2013. Effects of Substitution of Pr, Nd, and Sm for La on the Magnetic Properties and Magnetocaloric Effect of La1.4Ca1.6Mn2O7. Journal of Alloys and Compounds, 553 (Supplement C), 129-134.
  • 25. Phan, T.L., Ho, T.A., Thang, P.D., Tran, Q.T., Thanh, T.D., Phuc, N.X., 2014. Critical Behavior of Y-doped Nd0.7Sr0.3MnO3 Manganites Exhibiting the Tricritical Point and Large Magnetocaloric Effect. Journal of Alloys and Compounds, 615(Supplement C), 937-945.
There are 25 citations in total.

Details

Primary Language English
Journal Section Articles
Authors

Mustafa Akyol This is me

Publication Date March 15, 2018
Published in Issue Year 2018 Volume: 33 Issue: 1

Cite

APA Akyol, M. (2018). Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 33(1), 143-150. https://doi.org/10.21605/cukurovaummfd.420692
AMA Akyol M. Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3. cukurovaummfd. March 2018;33(1):143-150. doi:10.21605/cukurovaummfd.420692
Chicago Akyol, Mustafa. “Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3”. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi 33, no. 1 (March 2018): 143-50. https://doi.org/10.21605/cukurovaummfd.420692.
EndNote Akyol M (March 1, 2018) Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi 33 1 143–150.
IEEE M. Akyol, “Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3”, cukurovaummfd, vol. 33, no. 1, pp. 143–150, 2018, doi: 10.21605/cukurovaummfd.420692.
ISNAD Akyol, Mustafa. “Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3”. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi 33/1 (March 2018), 143-150. https://doi.org/10.21605/cukurovaummfd.420692.
JAMA Akyol M. Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3. cukurovaummfd. 2018;33:143–150.
MLA Akyol, Mustafa. “Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3”. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, vol. 33, no. 1, 2018, pp. 143-50, doi:10.21605/cukurovaummfd.420692.
Vancouver Akyol M. Effect of Eu Doping on the Structural, Magnetic and Magnetocaloric Properties in La0.85Ag0.15MnO3. cukurovaummfd. 2018;33(1):143-50.