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Published in: Journal of Materials Science: Materials in Electronics 8/2020

10-03-2020

Multifunctional behavior of Ca-doped niobium-based double perovskite for photovoltaic/solar cell devices

Authors: B. N. Parida, Priyabadini Biswal, S. Behera, R. K. Parida, R. Padhee

Published in: Journal of Materials Science: Materials in Electronics | Issue 8/2020

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Abstract

Smart materials of oxide ceramics are usually in the form of single- or polycrystalline. The present ceramic belongs to the polycrystalline compound of Pb1.5Ca0.5BiNbO6 which has a double perovskite structure with the general form of A1.5A′0.5BB′O6. For synthesis and characterization of the sample, a solid solution casting method, X-ray diffraction, scanning electron micrography, Infra-red spectroscopy, etc., have been utilized. Different characterization reveals that the material has a higher value of room-temperature dielectric constant remnant polarization useful for energy storage devices. Optical equities of the ceramic were further analysed by UV–Vis and PL spectroscopy analysis which reveals that the material can be useful for energy harvesting devices like photovoltaic/solar cells. The estimated thermistor parameter suggests that the material can also be useful for thermal sensor devices.

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Literature
1.
go back to reference G. Goodman, J. Am. Ceram. Soc. 36, 368 (1953) G. Goodman, J. Am. Ceram. Soc. 36, 368 (1953)
2.
go back to reference M.H. Francombe, B. Lewis, Acta Crystallogr. 11, 696 (1958) M.H. Francombe, B. Lewis, Acta Crystallogr. 11, 696 (1958)
3.
go back to reference G.A. Smolenskii, A.I. Agranovskaya, Dokl. Akad. Nauk. SSSR. 97, 237 (1954) G.A. Smolenskii, A.I. Agranovskaya, Dokl. Akad. Nauk. SSSR. 97, 237 (1954)
4.
go back to reference P.B. Jamieson, S.C. Abraham, J.L. Bernstein, J. Chem. Phys. 48, 5048 (1965) P.B. Jamieson, S.C. Abraham, J.L. Bernstein, J. Chem. Phys. 48, 5048 (1965)
5.
6.
go back to reference A. Sobhani-Nasab, S.M. Hosseinpour-Mashkani, M. Salavati-Niasari, H. Taqriri, S. Bagheri, K. Saberyan, J. Mater. Sci. Mater. Electron. 26, 5735 (2015) A. Sobhani-Nasab, S.M. Hosseinpour-Mashkani, M. Salavati-Niasari, H. Taqriri, S. Bagheri, K. Saberyan, J. Mater. Sci. Mater. Electron. 26, 5735 (2015)
7.
go back to reference A. Sobhani-Nasab, S.M. Hosseinpour-Mashkani, M. Salavati-Niasari, S. Bagheri, J. Clust. Sci. 26, 1305 (2015) A. Sobhani-Nasab, S.M. Hosseinpour-Mashkani, M. Salavati-Niasari, S. Bagheri, J. Clust. Sci. 26, 1305 (2015)
8.
go back to reference S.M. Hosseinpour-Mashkani, A. Sobhani-Nasab, J. Mater. Sci. Mater. Electron. 28, 4345 (2017) S.M. Hosseinpour-Mashkani, A. Sobhani-Nasab, J. Mater. Sci. Mater. Electron. 28, 4345 (2017)
9.
go back to reference M.E. Lines, A.M. Glass, Principle and Applications of Ferro-electrics and Related Materials (Clarndon, Oxford, 1977) M.E. Lines, A.M. Glass, Principle and Applications of Ferro-electrics and Related Materials (Clarndon, Oxford, 1977)
10.
go back to reference K.L. Kobayashi, T. Kimura, H. Sawada, K. Terakura, Y. Tokura, Nature 395, 677 (1998) K.L. Kobayashi, T. Kimura, H. Sawada, K. Terakura, Y. Tokura, Nature 395, 677 (1998)
11.
go back to reference R.J. Cava, B. Batlogg, J.J. Krajewski, R. Farrow, L.W. Rupp, A.E. White et al., Nature 332, 814 (1988) R.J. Cava, B. Batlogg, J.J. Krajewski, R. Farrow, L.W. Rupp, A.E. White et al., Nature 332, 814 (1988)
12.
go back to reference W.E. Pickett, D.J. Singh, Phys. Rev. B 53, 1146 (1996) W.E. Pickett, D.J. Singh, Phys. Rev. B 53, 1146 (1996)
13.
go back to reference M. Li, M.J. Pietrowski, R.A. De Souza, H. Zhang, I.M. Reaney, S.N. Cook et al., Nat. Mater. 13, 31 (2014) M. Li, M.J. Pietrowski, R.A. De Souza, H. Zhang, I.M. Reaney, S.N. Cook et al., Nat. Mater. 13, 31 (2014)
14.
go back to reference H. Tanaka, M. Misono, Curr. Opin. Solid State Mater. Sci. 5, 381 (2001) H. Tanaka, M. Misono, Curr. Opin. Solid State Mater. Sci. 5, 381 (2001)
15.
go back to reference S.W. Cheong, M. Mostovoy, Nat. Mater. 6, 13–20 (2007) S.W. Cheong, M. Mostovoy, Nat. Mater. 6, 13–20 (2007)
16.
go back to reference M.A. Green, A. Ho-Baillie, H.J. Snaith, Nat. Photon. 8, 506 (2014) M.A. Green, A. Ho-Baillie, H.J. Snaith, Nat. Photon. 8, 506 (2014)
17.
go back to reference Y.H. Huang, R.I. Das, Z.L. Xing, J.B. Goodenough, Science 312, 254–257 (2006) Y.H. Huang, R.I. Das, Z.L. Xing, J.B. Goodenough, Science 312, 254–257 (2006)
18.
go back to reference A.S. Bhalla, R. Guo, R. Roy, Mater. Res. Innov. 4, 3–26 (2000) A.S. Bhalla, R. Guo, R. Roy, Mater. Res. Innov. 4, 3–26 (2000)
19.
go back to reference W.G. Cady, Piezoelectricity (Dover, New York, 1962) W.G. Cady, Piezoelectricity (Dover, New York, 1962)
20.
go back to reference J.C. Burfoot, Ferroelectrics (Van Nostrand, New York, 1967) J.C. Burfoot, Ferroelectrics (Van Nostrand, New York, 1967)
21.
go back to reference M. Liegeois-Duyckaerts, P. Tarte, Acta A Mol. Spectrosc. 30, 1771 (1974) M. Liegeois-Duyckaerts, P. Tarte, Acta A Mol. Spectrosc. 30, 1771 (1974)
22.
go back to reference E. W. Powd, An Interactive Powder Diffraction Data Interpretation and Indexing Program, Ver 2.1. School of Physical Science, Finders University of South Australia, Bedford Park, S.A. 5042, Australia E. W. Powd, An Interactive Powder Diffraction Data Interpretation and Indexing Program, Ver 2.1. School of Physical Science, Finders University of South Australia, Bedford Park, S.A. 5042, Australia
23.
go back to reference B.D. Cullity, Elements of X-Ray Diffraction (Addison Wesley, Boston, 1978) B.D. Cullity, Elements of X-Ray Diffraction (Addison Wesley, Boston, 1978)
24.
25.
go back to reference N. Dhlaha, K.L. Yadav, I.E.E.E. Trans, Dielectr. Electr. Insul. 21, 5 (2014) N. Dhlaha, K.L. Yadav, I.E.E.E. Trans, Dielectr. Electr. Insul. 21, 5 (2014)
26.
go back to reference B.N. Parida, R.K. Parida, A.B. Panda, J. Alloys Compds. 696, 338 (2017) B.N. Parida, R.K. Parida, A.B. Panda, J. Alloys Compds. 696, 338 (2017)
27.
go back to reference W. Hu, T. Li, X. Liu, D. Dastan, K. Ji, P. Zhao, J. Alloys. Compos. 818, 152933 (2020) W. Hu, T. Li, X. Liu, D. Dastan, K. Ji, P. Zhao, J. Alloys. Compos. 818, 152933 (2020)
28.
go back to reference D. Dastan, S.L. Panahi, N.B. Chaure, J. Mater. Sci. Mater. Electron. 27, 12291 (2016) D. Dastan, S.L. Panahi, N.B. Chaure, J. Mater. Sci. Mater. Electron. 27, 12291 (2016)
29.
go back to reference S. Zafar, R.E. Jones, B. Jiang, B. White, P. Chu, D. Taylor, S. Gillespie, Appl. Phys. Lett. 73, 175 (1998) S. Zafar, R.E. Jones, B. Jiang, B. White, P. Chu, D. Taylor, S. Gillespie, Appl. Phys. Lett. 73, 175 (1998)
30.
go back to reference M.T. Anderson, K.B. Greenwood, G.A. Taylor, K.R. Poeppelmeier, Prog. Solid State Chem. 22, 197 (1993) M.T. Anderson, K.B. Greenwood, G.A. Taylor, K.R. Poeppelmeier, Prog. Solid State Chem. 22, 197 (1993)
31.
go back to reference D. Dastan, J. At. Mol. Condens. Nano Phys. 2, 109–114 (2015) D. Dastan, J. At. Mol. Condens. Nano Phys. 2, 109–114 (2015)
32.
go back to reference R.S. Mulliken, Spectroscopy, Molecular Orbitals, and Chemical Bonding, Nobel Lecture, December 12 (1966) R.S. Mulliken, Spectroscopy, Molecular Orbitals, and Chemical Bonding, Nobel Lecture, December 12 (1966)
33.
go back to reference A. Barros, R. Deloncle, J. Deschamp, P. Boutinaud, G. Chadeyron, R. Mahiou, E. Cavalli, M.G. Brik, Opt. Mater. 36, 1724 (2014) A. Barros, R. Deloncle, J. Deschamp, P. Boutinaud, G. Chadeyron, R. Mahiou, E. Cavalli, M.G. Brik, Opt. Mater. 36, 1724 (2014)
34.
go back to reference T. Nakajima, M. Isobe, T. Tsuchiya, Y. Ueda, T. Manabe, Opt. Mater. 32, 1618 (2010) T. Nakajima, M. Isobe, T. Tsuchiya, Y. Ueda, T. Manabe, Opt. Mater. 32, 1618 (2010)
35.
36.
go back to reference E.H. Nicollian, J.R. Brews, Metal Oxide Semiconductor (MOS) Physics and Technology (Willey, New York, 1982) E.H. Nicollian, J.R. Brews, Metal Oxide Semiconductor (MOS) Physics and Technology (Willey, New York, 1982)
37.
go back to reference D. Dastan, N. Chaure, M. Kartha, J. Mater. Sci. Mater. Electron. 28, 7784 (2017) D. Dastan, N. Chaure, M. Kartha, J. Mater. Sci. Mater. Electron. 28, 7784 (2017)
38.
go back to reference V.V. Shvartsman, M.E. Costa, M. Avdeev, A.L. Kholkin, Ferroelectrics 296, 187 (2003) V.V. Shvartsman, M.E. Costa, M. Avdeev, A.L. Kholkin, Ferroelectrics 296, 187 (2003)
39.
go back to reference R.J. Xie, Y. Akimune, K. Matsuo, T. Sugiyama, N. Hirosaki, T. Sekiya, Appl. Phys. Lett. 80, 835 (2002) R.J. Xie, Y. Akimune, K. Matsuo, T. Sugiyama, N. Hirosaki, T. Sekiya, Appl. Phys. Lett. 80, 835 (2002)
40.
go back to reference L. Fang, H. Zhang, B. Wu, R. Yuan, Prog. Cryst. Growth Charact. Mater. 40, 161 (2000) L. Fang, H. Zhang, B. Wu, R. Yuan, Prog. Cryst. Growth Charact. Mater. 40, 161 (2000)
41.
go back to reference B.N. Parida, P.R. Das, R. Padhee, R.N.P. Choudhary, Adv. Mater. Lett. 3, 231 (2012) B.N. Parida, P.R. Das, R. Padhee, R.N.P. Choudhary, Adv. Mater. Lett. 3, 231 (2012)
42.
go back to reference E.H. Nicollian, A. Goetzberger, Appl. Phys. Lett. 7, 216 (1965) E.H. Nicollian, A. Goetzberger, Appl. Phys. Lett. 7, 216 (1965)
43.
go back to reference L. Fu, K. Liu, B. Zhang, J. Chu, Appl. Phys. Lett. 72, 1784 (1998) L. Fu, K. Liu, B. Zhang, J. Chu, Appl. Phys. Lett. 72, 1784 (1998)
44.
go back to reference P. Matheswaran, R. Sathyamoorthy, R. Saravanakumar, S. Velumani, Mater. Sci. Eng. B 174, 269 (2010) P. Matheswaran, R. Sathyamoorthy, R. Saravanakumar, S. Velumani, Mater. Sci. Eng. B 174, 269 (2010)
45.
go back to reference M. Adamczyk, L. Kozeilski, M. Pilch, Ferroelectrics 417, 1–8 (2011) M. Adamczyk, L. Kozeilski, M. Pilch, Ferroelectrics 417, 1–8 (2011)
46.
go back to reference B.N. Parida, D.K. Pattanayak, R.K. Parida, B. Mohantyand, N.C. Nayak, J. Mol. Struct. 1189, 288 (2019) B.N. Parida, D.K. Pattanayak, R.K. Parida, B. Mohantyand, N.C. Nayak, J. Mol. Struct. 1189, 288 (2019)
47.
go back to reference A. Lentz, Z. Anorg, Allg. Chem. 402, 153 (1973) A. Lentz, Z. Anorg, Allg. Chem. 402, 153 (1973)
49.
go back to reference D. Dantan, S.W. Gosavi, N.B. Chaure, Macromol. Symp. 347, 81 (2015) D. Dantan, S.W. Gosavi, N.B. Chaure, Macromol. Symp. 347, 81 (2015)
50.
go back to reference H. Zuo, W. Fu, R. Fan, D. Dastan, H. Wang, Z. Shi, Mater. Lett. 263, 127217 (2020) H. Zuo, W. Fu, R. Fan, D. Dastan, H. Wang, Z. Shi, Mater. Lett. 263, 127217 (2020)
51.
go back to reference A.K. Jonscher, Dielectric Relaxation in Solids (Chelsea Dielectric, London, 1983) A.K. Jonscher, Dielectric Relaxation in Solids (Chelsea Dielectric, London, 1983)
52.
go back to reference A.P. Ayala, I. Guedes, E.N. Silva, J. Appl. Phys. 101, 123511–123521 (2007) A.P. Ayala, I. Guedes, E.N. Silva, J. Appl. Phys. 101, 123511–123521 (2007)
53.
go back to reference F.I.H. Rhouma, A. Dhahri, J. Dhahri, M.A. Valente, Appl. Phys. A 108, 593 (2012) F.I.H. Rhouma, A. Dhahri, J. Dhahri, M.A. Valente, Appl. Phys. A 108, 593 (2012)
54.
go back to reference X.T. Yin, D. Dastan, F.Y. Wu, J. Li, Nanomaterials 9, 1163 (2019) X.T. Yin, D. Dastan, F.Y. Wu, J. Li, Nanomaterials 9, 1163 (2019)
55.
go back to reference X. Zhu, J. Yang, D. Dastan, H. Garmestani, R. Fan, Z. Shi, Composites A 125, 105521 (2019) X. Zhu, J. Yang, D. Dastan, H. Garmestani, R. Fan, Z. Shi, Composites A 125, 105521 (2019)
56.
go back to reference X. Liu, Y. Luo, X. Li, Electrical properties of BaTiO3-based NTC ceramics doped by BaBiO3 and Y2O3. J. Alloys Compds. 459, 45–50 (2008) X. Liu, Y. Luo, X. Li, Electrical properties of BaTiO3-based NTC ceramics doped by BaBiO3 and Y2O3. J. Alloys Compds. 459, 45–50 (2008)
57.
go back to reference W. Luo, H.M. Yao, P.H. Yang, C.S. Chen, Negative temperature coefficient material with low thermal constant and high resistivity for low-temperature thermistor applications. J. Am. Ceram. Soc. 92, 2682–2686 (2009) W. Luo, H.M. Yao, P.H. Yang, C.S. Chen, Negative temperature coefficient material with low thermal constant and high resistivity for low-temperature thermistor applications. J. Am. Ceram. Soc. 92, 2682–2686 (2009)
58.
go back to reference N.F. Mott, Metal Insulator Transitions (Taylor and Francis, London, 1990) N.F. Mott, Metal Insulator Transitions (Taylor and Francis, London, 1990)
59.
go back to reference N.F. Mott, E.A. Davis, Electronic Processes in Non-crystalline Materials (Clarendon, Oxford, 1979), p. 287 N.F. Mott, E.A. Davis, Electronic Processes in Non-crystalline Materials (Clarendon, Oxford, 1979), p. 287
60.
go back to reference J.S. Steinhart, S.R. Hart, Deep Sea Res. Oceanogr. Abstr. 15, 497 (1968) J.S. Steinhart, S.R. Hart, Deep Sea Res. Oceanogr. Abstr. 15, 497 (1968)
Metadata
Title
Multifunctional behavior of Ca-doped niobium-based double perovskite for photovoltaic/solar cell devices
Authors
B. N. Parida
Priyabadini Biswal
S. Behera
R. K. Parida
R. Padhee
Publication date
10-03-2020
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 8/2020
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-020-03163-7

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