Araştırma Makalesi

Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials

Cilt: 12 Sayı: 2 30 Aralık 2022
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Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials

Öz

Developing low-cost, high-durability and high-performance electrocatalytic materials are needed for hydrogen/oxygen evolution (HER/OER) and oxygen reduction reactions (ORR) which are crucial steps for regenerative fuel cells. Although Pt-based, RuO2 and IrO2 materials are widely used for these purposes, other alternative materials are required with desired properties. In this regard, we studied the electrochemical properties of lanthanum-based perovskites which were synthesized by sol-gel method. We investigated the substitution of 10% Dy and 30% Sr into the A site and a small amount of Bi (x: 0, 0.03 and 0.1) added into the B site of La0.60Dy0.10Sr0.30Mn(1-x)BixO3 perovskites on HER, OER and ORR in 1 M KOH alkaline media at room temperature. While undoped and 3% Bi doped samples exhibited poor HER activities, the effect of 10% Bi in the structure enhanced HER activities by lowering onset potential from -1.389 V to -1.036 V (vs. Ag/AgCl) and increasing specific current density from -13.3 mA cm-2 to -121.8 mA cm-2 at -1.4 V. Similarly, OER activity was also improved due to 10% Bi and onset potential and specific current density was found to be 0.758 V and 88.3 mA cm-2, respectively. The large Tafel slopes indicate that the ORR mechanism is possible in the structure but at a slow rate. The addition of 10% Bi in the structure resulted in a very high resistance of 19.3 kΩ and it reduced to a desired value of 3.5 kΩ due to ion conducting paths developed in the catalysts.

Anahtar Kelimeler

Destekleyen Kurum

Çukurova Üniversitesi

Proje Numarası

FBA-2021-14197

Teşekkür

This work was supported by Cukurova University, Adana, Turkey, under Scientific Research Funding Grand No: FBA-2021-14197.

Kaynakça

  1. Luo, D., Su, R., Zhang, W., Gong, Q., Zhu, R., Minimizing non-radiative recombination losses in perovskite solar cells, Nature Reviews Materials, 5(1), 44-60, 2020.
  2. Zhu, H., Zhang, P., Dai, S., Recent Advances of Lanthanum-Based Perovskite Oxides for Catalysis, ACS Catalysis, 5(11), 6370-6385, 2015.
  3. Tanaka, H., Misono, M., Advances in designing perovskite catalysts, Current Opinion in Solid State and Materials Science, 5(5), 381-387, 2001.
  4. Jiang, L.Q., Guo, J.K., Liu, H.B., Zhu, M., Zhou, X., Wu, P., Li, C.H., Prediction of lattice constant in cubic perovskites, Journal of Physics and Chemistry of Solids, 67(7), 1531-1536, 2006.
  5. Akça, G., Çetin, S., Ekicibil, A., Composite xLa0.7Ca0.2Sr0.1MnO3/(1 − x)La0.7Te0.3MnO3 materials: magnetocaloric properties around room temperature, Journal of Materials Science: Materials in Electronics, 31, 2020.
  6. Laouyenne, M.R., Baazaoui, M., Mahjoub, S., Cheikhrouhou-Koubaa, W., Oumezzine, M., Enhanced magnetocaloric effect with the high tunability of bismuth in La0.8Na0.2Mn1−xBixO3 (0 ≤ x ≤ 0.06) perovskite manganites, Journal of Alloys and Compounds, 720, 212-220, 2017.
  7. Gaur, A., Meenakshi, Nagpal, V., Bisht, P., Mahato, R.N., Effect of Bi-doping on structural, magneto-caloric and magneto-resistive properties of La0.67-xBixCa0.33MnO3 perovskites, Solid State Communications, 340, 114504, 2021.
  8. Khan, A.A., Hira, U., Sher, F., Large relative cooling power of Bi-doped La0.8−xBixSr0.08(Ca0.55Ba0.45)0.12MnO3 (x=0.0, 0.1 and 0.3) perovskites: Magnetic and magnetocaloric properties, Ceramics International, 43(9), 7351-7357, 2017.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Yoğun Madde Fiziği, Fiziksel Kimya

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Aralık 2022

Gönderilme Tarihi

28 Kasım 2022

Kabul Tarihi

23 Aralık 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 12 Sayı: 2

Kaynak Göster

APA
Kurt, M. Z. (2022). Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials. Adıyaman University Journal of Science, 12(2), 315-323. https://doi.org/10.37094/adyujsci.1210860
AMA
1.Kurt MZ. Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials. ADYU J SCI. 2022;12(2):315-323. doi:10.37094/adyujsci.1210860
Chicago
Kurt, Mustafa Zeki. 2022. “Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials”. Adıyaman University Journal of Science 12 (2): 315-23. https://doi.org/10.37094/adyujsci.1210860.
EndNote
Kurt MZ (01 Aralık 2022) Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials. Adıyaman University Journal of Science 12 2 315–323.
IEEE
[1]M. Z. Kurt, “Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials”, ADYU J SCI, c. 12, sy 2, ss. 315–323, Ara. 2022, doi: 10.37094/adyujsci.1210860.
ISNAD
Kurt, Mustafa Zeki. “Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials”. Adıyaman University Journal of Science 12/2 (01 Aralık 2022): 315-323. https://doi.org/10.37094/adyujsci.1210860.
JAMA
1.Kurt MZ. Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials. ADYU J SCI. 2022;12:315–323.
MLA
Kurt, Mustafa Zeki. “Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials”. Adıyaman University Journal of Science, c. 12, sy 2, Aralık 2022, ss. 315-23, doi:10.37094/adyujsci.1210860.
Vancouver
1.Mustafa Zeki Kurt. Electrochemical Properties of Low Bi Doped La0.60Dy0.10Sr0.30Mn(1-x)BixO3 Perovskite Materials. ADYU J SCI. 01 Aralık 2022;12(2):315-23. doi:10.37094/adyujsci.1210860