243
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Improving the microwave dielectric properties of BiCu3Ti3FeO12 with the addition of Bi2O3

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon, , , , , , , ORCID Icon, & ORCID Icon show all
Pages 321-331 | Received 27 Jan 2021, Accepted 12 Aug 2021, Published online: 24 Aug 2021

References

  • Kajfez D, Guillon P. Dielectric resonators. 2nd ed Atlanta: Noble Publishing Corporation; 1998.
  • Sebastian MT. Dielectric materials for wireless communication. 1st ed Oxford: Elsevier; 2008.
  • Petosa A. Dielectric resonator antenna handbook [Internet]. Artech House, editor. Universidade de Michigan: Artech House; 2007.
  • Luk KM, Leung KW. Dielectric resonator antennas [Internet]. Research Studies Press; 2003.
  • Fechine PBA, Fontgalland G, Sombra ASB. New materials for miniaturized magneto-dielectric antennas based on GdIGxYIG1-x composite. 2016 IEEE Antennas Propag Soc Int Symp APSURSI 2016 - Proc. 2016;1939–1940.
  • Moulson AJ, Herbert JM. Electroceramics: materials, properties, applications [Internet]. Wiley; 2003.
  • Guha D, Antar YMM, Ittipiboon A, et al. Improved design guidelines for the ultra wideband monopole-dielectric resonator antenna. IEEE Antennas Wirel Propag Lett. 2006;5:373–376.
  • Guo Y-X, Ruan Y-F, Shi X-Q. Wide-band stacked double annular-ring dielectric resonator antenna at the end-fire mode operation. IEEE Trans Antennas Propag. 2005;53:3394–3397.
  • Abreu RF, Saturno SO, Sancho EO, et al. Microwave dielectric properties study of the La2O3 additions on the SrBi2Nb2O9 matrix. J Electron Mater. 2019;48:1196–1206.
  • Pandey RK. Fundamentals of electroceramics: materials, devices, and applications. Hoboken: Wiley; 2018.
  • Abreu TO, Abreu RF, do Carmo FF, et al. A novel ceramic matrix composite based on YNbO4–TiO2 for microwave applications. Ceram Int. 2021;47:15424–15432.
  • Abreu RF, Abreu TO, Colares DDM, et al. Evaluation of dielectric properties of the barium titanium silicate (Ba2TiSi2O8) for microwave applications. J Mater Sci Mater Electron. 2021;32:7034–7048.
  • Liang P, Wang X, Chao X, et al. Electric response and improved dielectric properties in BiCu3Ti3FeO12. J Alloys Compd. 2018;734:9–15.
  • Shi P, Liang P, Yang Z, et al. Intrinsic and extrinsic dielectric responses in BiCu3Ti3FeO12 ceramics. Ceram Int. 2015;41:3672–3676.
  • Oliveira RGM, Freitas DB, Romeu MC, et al. Design and simulation of Na2Nb4O11 dielectric resonator antenna added with Bi2O3 for microwave applications. Microw Opt Technol Lett. 2016;58:1211–1217.
  • Bezerra JWO, Oliveira RGM, Silva MAS, et al. Dielectric resonator antennas with frequency stability under severe temperature variations based on Li2MgTi3O8 ceramic matrix added with Bi2O3. J Electron Mater. 2018;47:7272–7280.
  • Silva MAS, Oliveira RGM, Sombra ASB. Dielectric and microwave properties of common sintering aids for the manufacture of thermally stable ceramics. Ceram Int. 2019;45:20446–20450.
  • McAllister MW, Long SA, Conway GL. Rectangular dielectric resonator antenna. Electron Lett. 1983;19:218.
  • Long S, McAllister M, Shen L. The resonant cylindrical dielectric cavity antenna. IEEE Trans Antennas Propag. 1983;31:406–412.
  • Rietveld HM. Line profiles of neutron powder-diffraction peaks for structure refinement. Acta Crystallogr. 1967;22:151–152.
  • Rietveld HM. A profile refinement method for nuclear and magnetic structures. J Appl Crystallogr. 1969;2:65–71.
  • Drossos G, Wu Z, Davis LE. Theoretical and experimental investigation of cylindrical dielectric resonator antennas. Microw Opt Technol Lett. 1996;13:119–123.
  • Mongia RK, Bhartia P. Dielectric resonator antennas—a review and general design relations for resonant frequency and bandwidth. Int J Microwa Millimeter-Wave Comput Aided Eng. 1994;4:230–247.
  • Kishk AA, Kajfez D, Junker GP, et al. Effect of air gap on cylindrical dielectric resonator antenna operating in TM01 mode. Electron Lett. 1994;30:97–98.
  • Junker GP, Kishk AA, Glisson AW. Input impedance of dielectric resonator antennas excited by a coaxial probe. IEEE Trans Antennas Propag. 1994;42:960–966.
  • Kiang J-F. Novel technologies for microwave and millimeter — wave applications. Boston (MA): Springer US; 2004.
  • Silva MAS, Fernandes TSM, Sombra ASB. An alternative method for the measurement of the microwave temperature coefficient of resonant frequency (τ f). J Appl Phys. 2012;112:074106.
  • Abreu RF, Saturno SO, do Nascimento JPC, et al. Dielectric characterisation and numerical investigation of SrBi2Nb2O9–Bi2O3 composites for applications in microwave range.J Electromagn Waves Appl. 2020;34:1705–1718.
  • Freitas VF, Santos IA. Mecanosíntese do composto BiFeO3. Cerâmica. 2008;54:338–344.
  • Marinkovic-Stanojevica Z, Mancic L, Sreckovic T, et al. Mechanochemical synthesis of bismuth ferrite. J Min Metall Sect B Metall. 2013;49:27–31.
  • Köferstein R, Buttlar T, Ebbinghaus SG. Investigations on Bi25FeO40 powders synthesized by hydrothermal and combustion-like processes. J Solid State Chem. 2014;217:50–56.
  • Falcón H, Sánchez-Benítez J, Martínez-Lope MJ, et al. Neutron diffraction, Mössbauer and magnetotransport study of Fe-substituted derivatives of CaCu3Mn4O12 perovskite with colossal magnetoresistance. J Phys Condens Matter. 2007;19:356209.
  • Pansara PR, Raval PY, Vasoya NH, et al. Intriguing structural and magnetic properties correlation study on Fe3+-substituted calcium-copper-titanate. Phys Chem Phys. 2018;20:1914–1922.
  • Pozar DM. Microwave engineering. 4th ed. Hoboken: Wiley; 2011.
  • Stutzman WL, Thiele GA. Antenna theory and design. 3rd ed. Sons JW, editor. Hoboken: Wiley; 2012.
  • Leite RV, Costa FOS, Sebastian MT, et al. Experimental and numerical investigation of dielectric resonator antenna based on doped Ba(Zn1/3Ta2/3)O3 ceramic. J Electromagn Waves Appl. 2019;33:84–95.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.