Issue 35, 2023

Enhanced thermal and dielectric properties of CaCu3Ti4O12 by (Fe, La)-co-doping

Abstract

It is found that the linearization of the resistance–temperature curve for CaCu3Ti4O12 can be achieved by changing the energy band structure induced by Fe3+, but at the cost of decreasing temperature sensitivity. Here, a novel strategy is proposed to improve the thermal and dielectric properties of CaCu3Ti4O12 ceramics by (La,Fe)-co-doping. This can both linearize the resistance–temperature relationship by adjusting the energy band structure of the grains due to the Fe3+ doping and improve the temperature sensitivity by increasing the grain boundary potential barrier resulting from La3+ doping. The dielectric constant increases upon decreasing the grain boundary potential barrier and increasing the carrier concentration. Therefore, the dielectric constant and temperature sensitivity can be regulated by adjusting the characteristics of grains and grain boundary. This work bridges the relationship between thermal sensitivity and dielectric properties, and opens up a door for the development of a multifunctional coupler CaCu3Ti4O12 device.

Graphical abstract: Enhanced thermal and dielectric properties of CaCu3Ti4O12 by (Fe, La)-co-doping

Supplementary files

Article information

Article type
Paper
Submitted
24 Jul 2023
Accepted
03 Aug 2023
First published
07 Aug 2023

J. Mater. Chem. C, 2023,11, 12037-12047

Enhanced thermal and dielectric properties of CaCu3Ti4O12 by (Fe, La)-co-doping

R. Wu, H. Li, Y. Liu, A. Chang and B. Zhang, J. Mater. Chem. C, 2023, 11, 12037 DOI: 10.1039/D3TC02598E

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