TY - JOUR
T1 - Gradient-Acceptor-Doping Breaks the Piezoelectric Trade-Off in Lead-Free (K, Na)NbO3 Ceramics
AU - Yan, Lei
AU - Yao, Yang
AU - Wang, Zhipeng
AU - Wu, Chao
AU - Zhang, Junwei
AU - Ma, Yinchang
AU - Zhang, Xi xiang
AU - Tan, Zhi
AU - Zhang, Lele
AU - Gao, Xiangyu
AU - Li, Fei
AU - Gao, Xiaoyi
AU - Lv, Xiang
AU - Zhang, Shujun
AU - Wu, Jiagang
N1 - Publisher Copyright:
© 2025 Wiley-VCH GmbH.
PY - 2025
Y1 - 2025
N2 - Achieving a high piezoelectric coefficient (d33) and a high mechanical quality factor (Qm) simultaneously in ferroelectric ceramics has been a persistent challenge, as conventional doping strategies, i.e., donor doping and acceptor doping, inevitably sacrifice one for the other. Here, the inherent trade-off is breaking through a new gradient-acceptor-doping strategy. By judiciously introducing gradient Cu2+-acceptor ions in “soft” (K, Na)NbO3 (KNN) ceramics, a record combination of properties is achieved — a d33 of 350 pC/N and a Qm of 340,—the first co-elevation of both parameters exceeding 300 in KNN-based systems. This represents a fourfold improvement in Qm with only a 10% reduction in d33. Multi-scale structural analysis reveals that the gradient doping retains a “soft” interior for high d33, and creates a “hardened” surface layer that effectively restrains domain switching, accounting for the enhanced Qm. This work offers a new paradigm for designing high-power ferroelectric ceramics by spatially tailoring functional properties.
AB - Achieving a high piezoelectric coefficient (d33) and a high mechanical quality factor (Qm) simultaneously in ferroelectric ceramics has been a persistent challenge, as conventional doping strategies, i.e., donor doping and acceptor doping, inevitably sacrifice one for the other. Here, the inherent trade-off is breaking through a new gradient-acceptor-doping strategy. By judiciously introducing gradient Cu2+-acceptor ions in “soft” (K, Na)NbO3 (KNN) ceramics, a record combination of properties is achieved — a d33 of 350 pC/N and a Qm of 340,—the first co-elevation of both parameters exceeding 300 in KNN-based systems. This represents a fourfold improvement in Qm with only a 10% reduction in d33. Multi-scale structural analysis reveals that the gradient doping retains a “soft” interior for high d33, and creates a “hardened” surface layer that effectively restrains domain switching, accounting for the enhanced Qm. This work offers a new paradigm for designing high-power ferroelectric ceramics by spatially tailoring functional properties.
KW - gradient acceptor doping
KW - lead-free ceramics
KW - mechanical quality factor
KW - piezoelectric coefficient
KW - potassium sodium niobate
UR - https://www.scopus.com/pages/publications/105024774623
U2 - 10.1002/adma.202521306
DO - 10.1002/adma.202521306
M3 - 文章
AN - SCOPUS:105024774623
SN - 0935-9648
JO - Advanced Materials
JF - Advanced Materials
ER -