TY - JOUR
T1 - Ultrahigh-temperature piezoelectric polycrystalline ceramics
T2 - dramatically enhanced ferroelectricity, piezoelectricity and electrical resistivity in Ca1−3xBi2+3xNb2−xMnxO9
AU - Long, Changbai
AU - Ren, Wei
AU - Zheng, Kun
AU - Fan, Huiqing
N1 - Publisher Copyright:
© 2020, © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.
PY - 2020/4/2
Y1 - 2020/4/2
N2 - Among Aurivillius-phase ferroelectric ceramics, CaBi2Nb2O9 is considered as the best candidate with potential applications in ultrahigh-temperature piezoelectric devices due to the highest Tc (∼940 °C). This paper reports that BiMn co-substitution at A and B sites gives rise to dramatic enchantments in ferroelectricity, piezoelectricity, and electrical resistivity of CaBi2Nb2O9 ceramics. The optimum composition (Ca0.97Bi2.03Nb1.99Mn0.01O9) with a Tc of 953 ± 3°C shows a high ferroelectric remnant polarization (Pr), field-induced strain (S33), piezoelectric activity d33 and d* 33 with values of ∼11.1 µC/cm2, 4.9 × 10−4, 20.8 and 26.1 pC/N, respectively, which are about two to three times those of CaBi2Nb2O9.
AB - Among Aurivillius-phase ferroelectric ceramics, CaBi2Nb2O9 is considered as the best candidate with potential applications in ultrahigh-temperature piezoelectric devices due to the highest Tc (∼940 °C). This paper reports that BiMn co-substitution at A and B sites gives rise to dramatic enchantments in ferroelectricity, piezoelectricity, and electrical resistivity of CaBi2Nb2O9 ceramics. The optimum composition (Ca0.97Bi2.03Nb1.99Mn0.01O9) with a Tc of 953 ± 3°C shows a high ferroelectric remnant polarization (Pr), field-induced strain (S33), piezoelectric activity d33 and d* 33 with values of ∼11.1 µC/cm2, 4.9 × 10−4, 20.8 and 26.1 pC/N, respectively, which are about two to three times those of CaBi2Nb2O9.
KW - Aurivillius-phase ferroelectrics
KW - BiMn substitution
KW - CaBiNbO ceramics
KW - oxygen vacancy
KW - piezoelectricity
UR - http://www.scopus.com/inward/record.url?scp=85085912057&partnerID=8YFLogxK
U2 - 10.1080/21663831.2020.1725676
DO - 10.1080/21663831.2020.1725676
M3 - 文章
AN - SCOPUS:85085912057
SN - 2166-3831
VL - 8
SP - 165
EP - 172
JO - Materials Research Letters
JF - Materials Research Letters
IS - 4
ER -