Emerald logo
Advanced search

Structural, electrical and microwave properties of (Sr0.6Ca0.4) (CoyMn1−y) O3 (0.2 ≤ y ≤ 1.0) thick film ceramics

R.P. Pawar (Department of Physics, Shivaji University, Kolhapur, India)
Vijaya Puri (Department of Physics, Shivaju University, Kolhapur, India)

Microelectronics International

ISSN: 1356-5362

Publication date: 4 January 2016

Abstract

Purpose

This paper aims to study the structural, electrical and microwave properties of (Sr0.6Ca0.4) (CoyMn1−y) O3 (0.2 ≤ y ≤ 1.0) thick-film ceramics.

Design/methodology/approach

The thick films of (Sr0.6Ca0.4) (CoyMn1−y) O3 (0.2 ≤ y ≤ 1.0) on the alumina substrate have been delineated using screen printing technique. The structural analysis was carried out using an X-ray diffraction method and scanning electron microscopy. The direct current (DC) electrical resistivity is measured using a two-probe method. Microwave absorption was studied in the 8-18 GHz frequency range by using the Waveguide Reflectometer Method. The permittivity and permeability in the 8-18 GHz frequency range were measured by using Voltage Standing Wave Ratio slotted section method.

Findings

The thick films have orthorhombic perovskite structure with dominant (020) plane. By using first-principle calculation method, theoretical and experimental lattice parameter and cell volume of (Sr0.6Ca0.4) (CoyMn1−y) O3 are matched with each other. The cobalt content changes the morphology from plates to needles. The DC electrical resistivity increases with increase in Co content and decreases with increase in temperature. (Sr0.6Ca0.4) (CoyMn1−y) O3 thick film shows 75 per cent microwave absorption both in the X band and Ku band. The microwave permittivity and permeability decreases with increase in frequency and Co content.

Originality/value

Structural, electrical and microwave properties of (Sr0.6Ca0.4) (CoyMn1−y) O3 (0.2 ≤ y ≤ 1.0). Thick film ceramics on alumina substrate is reported for the first time.

Keywords

  • Thick/thin film technology
  • Ceramics
  • Permittivity
  • Perovskite
  • Microwave absorbance

Acknowledgements

One of the authors Vijaya Puri would like to thank the UGC India for Award of Research Scientist “C”. R.P. Pawar would like to thank the DST PURSE scheme for their financial support. R.P. Pawar would like thank to D.P. Nade, Department of Physics, Shivaji University, Kolhapur, for valuable discussions and suggestions. All authors acknowledge the UGC-SAP and DST-FIST.

Citation

Pawar, R. and Puri, V. (2016), "Structural, electrical and microwave properties of (Sr0.6Ca0.4) (CoyMn1−y) O3 (0.2 ≤ y ≤ 1.0) thick film ceramics", Microelectronics International, Vol. 33 No. 1, pp. 9-14. https://doi.org/10.1108/MI-01-2015-0006

Download as .RIS

Publisher

:

Emerald Group Publishing Limited

Copyright © 2016, Emerald Group Publishing Limited

Please note you might not have access to this content

You may be able to access this content by login via Shibboleth, Open Athens or with your Emerald account.
Login
To rent this content from Deepdyve, please click the button.
Rent from Deepdyve
If you would like to contact us about accessing this content, click the button and fill out the form.
Contact us
Emerald Publishing
  • Opens in new window
  • Opens in new window
  • Opens in new window
  • Opens in new window
© 2019 Emerald Publishing Limited

Services

  • Authors Opens in new window
  • Editors Opens in new window
  • Librarians Opens in new window
  • Researchers Opens in new window
  • Reviewers Opens in new window

About

  • About Emerald Opens in new window
  • Working for Emerald Opens in new window
  • Contact us Opens in new window
  • Publication Sitemap

Policies and information

  • Legal Opens in new window
  • Editorial policy Opens in new window & originality guidelines Opens in new window
  • Site policies
  • Modern Slavery Act Opens in new window

We’re listening — tell us what you think

  • Something didn’t work…

    Report bugs here

  • All feedback is valuable

    Please share your general feedback

  • Member of Emerald’s Library Advisory Network?

    You can start or join in a discussion here.
    If you’d like to know more about The Network, please email us

Join us on our journey

  • Platform update page

    Visit emeraldpublishing.com/platformupdate to discover the latest news and updates

  • Frequently Asked Questions

    Your questions answered here