TY - JOUR
T1 - Reverse manipulation of intrinsic point defects in ZnO-based varistor ceramics through Zr-stabilized high ionic conducting βIII-Bi2O3 intergranular phase
AU - He, Jinqiang
AU - Li, Shengtao
AU - Lin, Jiajun
AU - Zhang, Le
AU - Feng, Kai
AU - Zhang, Lei
AU - Liu, Wenfeng
AU - Li, Jianying
N1 - Publisher Copyright:
© 2017 Elsevier Ltd
PY - 2018/4
Y1 - 2018/4
N2 - Intrinsic point defect structure plays a crucial role in functional ceramics with a grain-grain boundary microstructure. In the present study, a novel method of reversely manipulating intrinsic point defects (oxygen vacancy, Vo and zinc interstitial, Zni) in ZnO-based varistor ceramics is proposed, which makes use of Zr-stabilized high ionic conducting βIII-Bi2O3 intergranular phase. It is found that Zr-doping not only modifies the grain growth by the formation of secondary Zr-rich phase, but also influences the intrinsic point defect structure via the stabilized βIII-Bi2O3 phase, resulting in reduced Vo density but increased Zni density. The reverse manipulation is unambiguously demonstrated by broadband dielectric spectroscopy and further confirmed by the accelerated ageing experiment. The proposed intrinsic point defect dynamics unveil an important but usually neglected function of the dopant that has little solid solubility in ZnO grains, which opens up a promising way to tailor the material property.
AB - Intrinsic point defect structure plays a crucial role in functional ceramics with a grain-grain boundary microstructure. In the present study, a novel method of reversely manipulating intrinsic point defects (oxygen vacancy, Vo and zinc interstitial, Zni) in ZnO-based varistor ceramics is proposed, which makes use of Zr-stabilized high ionic conducting βIII-Bi2O3 intergranular phase. It is found that Zr-doping not only modifies the grain growth by the formation of secondary Zr-rich phase, but also influences the intrinsic point defect structure via the stabilized βIII-Bi2O3 phase, resulting in reduced Vo density but increased Zni density. The reverse manipulation is unambiguously demonstrated by broadband dielectric spectroscopy and further confirmed by the accelerated ageing experiment. The proposed intrinsic point defect dynamics unveil an important but usually neglected function of the dopant that has little solid solubility in ZnO grains, which opens up a promising way to tailor the material property.
KW - Dielectric spectroscopy
KW - Intrinsic point defect structure
KW - Reverse manipulation
KW - ZnO-based varistor ceramics
KW - Zr-doping
UR - https://www.scopus.com/pages/publications/85034578803
U2 - 10.1016/j.jeurceramsoc.2017.10.054
DO - 10.1016/j.jeurceramsoc.2017.10.054
M3 - 文章
AN - SCOPUS:85034578803
SN - 0955-2219
VL - 38
SP - 1614
EP - 1620
JO - Journal of the European Ceramic Society
JF - Journal of the European Ceramic Society
IS - 4
ER -