• Journal of Advanced Dielectrics
  • Vol. 11, Issue 3, 2140002 (2021)
J. A. Cortés1, J. Camargo2、*, M. F. Rachia1, F. Rubio-Marcos3、4, L. Ramajo2, M. Castro2, and M. A. Ramírez1
Author Affiliations
  • 1Sao Paulo State University — UNESP, Faculty of Engineering of Guaratingueta. Av., Dr. Ariberto Pereira da Cunha 333, Portal das Colinas, 12516-410, Guaratingueta, SP, Brazil
  • 2Research Institute for Materials Science and Technology, INTEMA, Av. Colon 10850, B7608FDQ, Mar del Plata, Argentina
  • 3Electroceramics Department, Instituto de Cerámica y Vidrio, CSIC, Kelsen 5, 28049, Madrid, Spain
  • 4Escuela Politécnica Superior. Universidad Antonio de Nebrija, Pirineos 55, 28040, Madrid, Spain
  • show less
    DOI: 10.1142/S2010135X21400026 Cite this Article
    J. A. Cortés, J. Camargo, M. F. Rachia, F. Rubio-Marcos, L. Ramajo, M. Castro, M. A. Ramírez. Influence of the sintering temperature on ferroelectric properties of potassium-sodium niobate piezoelectric ceramics[J]. Journal of Advanced Dielectrics, 2021, 11(3): 2140002 Copy Citation Text show less
    References

    [1] LiS.,BhallaA. S.,NewnhamR. E. andCrossL. E.,Quantitative evaluation of extrinsic contribution to piezoelectric coefficient d33 in ferroelectric PZT ceramics,Mater. Lett.17,21(1993).

    [2] LiH. L.,ZhangY.,ZhouJ. J.,ZhangX. W.,LiuH., andFangJ. Z.,Phase structure and electrical properties of xPZN-(1–x)PZT piezoceramics near the tetragonal/rhombohedral phase boundary,Ceram. Int.41,4822(2015).

    [3] VillegasM.,MoureC.,JuradoJ. R. andDuŕanP.,Influence of the calcining temperature on the sintering and properties of PZT ceramics,J. Mater. Sci.28,3482(1993).

    [4] ZhangL.,PuY.,ChenM.,WeiT. andPengX.,Novel Na0.5Bi0.5Ti0.5O3 based, lead-free energy storage ceramics with high power and energy density and excellent high-temperature stability,Chem. Eng. J.383,123154(2019).

    [5] JeongC. K.,ParkK. I.,RyuJ.,HwangG. T. andLeeK. J.,Large-area and flexible lead-free nanocomposite generator using alkaline niobate particles and metal nanorod filler,Adv. Funct. Mater.24,2620(2014).

    [6] MeyerE.,MutukwaD.,ZingweN. andTaziwaR.,Lead-free halide double perovskites: A review of the structural, optical, and stability properties halide perovskites,Metals8,667(2018).

    [7] PalneediH.,AnnapureddyV.,PriyaS. andRyuJ.,Status and perspectives of multiferroic magnetoelectric composite materials and applications,Actuators5,9(2016).

    [8] BobićJ. D.,Vijatović PetrovićM. M. andStojanovićB. D.,Metal Oxides, Magnetic, Ferroelectric, and Multiferroic Metal Oxides, ed. Stojanović B. D.,Chapter 11(Elsevier, 2018),pp. 233–249.

    [9] HaislmaierR. C.,LuY.,LapanoJ.,ZhouH.,AlemN.,SinnottS. B.,Engel-HerbertR. andGopalanV.,Large tetragonality and room temperature ferroelectricity in compressively strained CaTiO3 thin films,APL Mater.7,051104(2019).

    [10] PithanC.,ShiratoriY.,DornseifferJ.,HaegelF. H.,MagrezA. andWaserR.,Microemulsion mediated synthesis of nanocrystalline (KxNa1−x)NbO3 powders,J. Cryst. Growth280,191(2005).

    [11] ChowdhuryA.,BouldJ.,ZhangY.,JamesC. andMilneS. J.,Nano-powders of Na0.5K0.5NbO3 made by a sol-gel method,J. Nanopart. Res.12,209(2010).

    [12] HaoJ.,XuZ.,ChuR.,ZhangY.,ChenQ.,FuP.,LiW.,LiG. andYinQ.,Characterization of (K0.5Na0.5)NbO3 powders and ceramics prepared by a novel hybrid method of sol–gel and ultrasonic atomization,Mater. Des.31,3146(2010).

    [13] RoyS.,BiswasB. andMajumderS. B.,Investigations on flexible multiferroic composites,AIP Conf. Proc., Vol.1063(2008),pp. 276–289.

    [14] JinJ.,LuS. G.,ChanthadC.,ZhangQ.,HaqueM. A. andWangQ.,Multiferroic polymer composites with greatly enhanced magnetoelectric effect under a low magnetic bias,Adv. Mater.23,3853(2011).

    [15] XiangR. andWuJ.,Contribution of Bi0.5Na0.5ZrO3 on phase boundary and piezoelectricity in K0.48Na0.52Nb0.96Sb0.04O3- Bi0.5Na0.5SnO3-xBi0.5Na0.5ZrO3 ternary ceramics,J. Alloys Compd.684,397(2016).

    [16] TangX.,ChenT.,LiuY.,ZhangJ.,ZhangT.,WangG. andZhouJ.,Composition dependence of phase structure and electrical properties in (0.98-x)K0.35Na0.65NbO3–0.02BaZrO3–xBi0.5Na0.5ZrO3 ternary ceramics,J. Alloys Compd.672,277(2016).

    [17] YaoF. Z.,YuQ.,WangK.,LiQ. andLiJ. F.,Ferroelectric domain morphology and temperature-dependent piezoelectricity of (K,Na,Li)(Nb,Ta,Sb)O3 lead-free piezoceramics,RSC Adv.4,20062(2014).

    [18] RamajoL.,CastroM.,del CampoA.,FernandezJ. F. F. andRubio-MarcosF.,Influence of B-site compositional homogeneity on properties of (K0.44Na0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3-based piezoelectric ceramics,J. Eur. Ceram. Soc.34,2249(2014).

    [19] YanX.,PengB.,LuX.,DongQ. andLiW.,Structure evolution and enhanced piezoelectric properties of (K0.5Na0.5)NbO3-0.06LiTaO3-SrZrO3 lead-free ceramics,J. Alloys Compd.653,523(2015).

    [20] NandiniR. N.,KrishnaM.,SureshA. V. andNarasimha RaoK.,Effect of calcination kinetics and microwave sintering parameters on dielectric and peizo-electric properties of (K0.5Na0.5)NbO3 ceramics,Iran. J. Mater. Sci. Eng.15,14(2018).

    [21] SaitoY.,TakaoH.,TaniT.,NonoyamaT.,TakatoriK.,HommaT.,NakamuraT. andMasayaN.,Lead-free piezoceramics,Nature432,81(2004).

    [22] Rubio-MarcosF.,RomeroJ. J. andFernandezJ. F.,Effect of the temperature on the synthesis of (K,Na)NbO3-modified nanoparticles by a solid state reaction route,J. Nanopart. Res.12,2495(2010).

    [23] ZhengT.,WuJ.,XiaoD. andZhuJ.,Recent development in lead-free perovskite piezoelectric bulk materials,Prog. Mater. Sci.98,552(2018).

    [24] ChenY.,WangS.,ZhouH.,XuG.,WangQ. andZhuJ.,A systematic analysis of the radial resonance frequency spectra of the PZT-based (Zr/Ti = 52/48) piezoceramic thin disks.J. Adv. Ceram.9,380(2020).

    [25] Rubio-MarcosF.,MarchetP.,VendrellX.,RomeroJ. J.,RémondièreF.,MestresL. andFernándezJ. F.,Effect of MnO doping on the structure, microstructure and electrical properties of the (K,Na,Li)(Nb,Ta,Sb)O3 lead-free piezoceramics,J. Alloys Compd.509,8804(2011).

    [26] RavezJ. andSimonA.,Some solid state chemistry aspects of lead-free relaxor ferroelectrics,J. Solid State Chem.162,260(2001).

    [27] WangY.,DamjanovicD.,KleinN. andSetterN.,High-temperature instability of Li- and Ta-modified (K,Na)NbO3 piezoceramics,J. Am. Ceram. Soc.91,1962(2008).

    [28] Rubio-MarcosF.,MarchetP.,DuclèreJ. R.,RomeroJ. J. andFernándezJ. F.,Evolution of structural and electrical properties of (K,Na,Li)(Nb,Ta,Sb)O3 lead-free piezoceramics through CoO doping,Solid State Commun.151,1463(2011).

    [29] TanakaJ.,TsukiokaM.,BannaiE.,ShimazuM. andEharaS.,Ionic conduction in K3LiNb6O17 and K3LiTa6O17,J. Mater. Sci. Lett.1,133(1982).

    J. A. Cortés, J. Camargo, M. F. Rachia, F. Rubio-Marcos, L. Ramajo, M. Castro, M. A. Ramírez. Influence of the sintering temperature on ferroelectric properties of potassium-sodium niobate piezoelectric ceramics[J]. Journal of Advanced Dielectrics, 2021, 11(3): 2140002
    Download Citation