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  4. Effect of iron acceptor doping and calcium donor doping in potassium sodium niobate-based lead-free piezoceramics
 
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2024
Journal Article
Title

Effect of iron acceptor doping and calcium donor doping in potassium sodium niobate-based lead-free piezoceramics

Abstract
Lead-free potassium sodium niobate (KNN) ferroelectrics have emerged as promising alternatives to lead-based materials due to their reduced toxicity and sometimes enhanced properties. The opportunity to modify the ferroelectric properties by doping, nevertheless, differs from lead-based ceramics. A much lower impact with increasing dopant concentration was observed. This study systematically investigates the differences in defect chemistry of Na0.475K0.475Li0.065Nb0.92Ta0.08O3 ceramics through iron (Fe) acceptor doping and calcium (Ca) donor doping at varying concentrations. From the defect chemical point of view, it becomes evident that the impact of intrinsic defects on the electrical properties exceeds the effect of extrinsic defects induced by doping. The performance of the donor-doped (Ca2+) ceramics closely resembles that of undoped KNN. Thus, hardly any change in ferroelectric properties and conductivity is observed. For the Fe-doped samples, the conductivity and its contribution to the dielectric loss increased, which is not to the benefit of an application as a ferroelectric. Therefore, the concepts of “softening” and “hardening” of ferroelectric properties by doping are incompatible with regularly sintered KNN ceramics.
Author(s)
Azadeh, Maryam
Zhao, Changhao
Pawadi, Apoorva
Gao, Shuang
Frömling, Till
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Journal
Journal of the American Ceramic Society  
Open Access
DOI
10.1111/jace.19803
Additional full text version
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Language
English
Fraunhofer-Einrichtung für Wertstoffkreisläufe und Ressourcenstrategie IWKS  
Keyword(s)
  • defects

  • electrical conductivity

  • piezoelectric materials/properties

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