材料科学
压电
四方晶系
极化(电化学)
钙钛矿(结构)
凝聚态物理
兴奋剂
铁电性
电介质
化学物理
纳米技术
晶体结构
光电子学
结晶学
复合材料
物理化学
化学
物理
作者
Bei Li,Yilun Zhang,Meng Wang,Xu Zhang,Xiaofeng Zhang,Kai Liu
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2024-07-11
卷期号:17 (14): 3442-3442
被引量:1
摘要
Improving ferro-piezoelectric properties of niobate-based perovskites is highly desirable for developing eco-friendly high-performance sensors and actuators. Although electro-strain coupling is usually obtained by constructing multiphase boundaries via complex chemical compositions, defect engineering can also create opportunities for novel property and functionality advancements. In this work, a representative tetragonal niobate-based perovskite, i.e., KNbO3, is studied by using first-principles calculations. Two intrinsic types of Nb antisite defect complexes are selected to mimic alkali-deficiency induced excess Nb antisites in experiments. The formation energy, electronic profiles, polarization, and piezoelectric constants are systematically analyzed. It is shown that the structural distortion and chemical heterogeneity around the energetically favorable antisite pair defects, i.e., (NbK4·+KNb4′), lower the crystal symmetry of KNbO3 from tetragonal to triclinic phase, and facilitate polarization emergence and reorientation to substantially enhance intrinsic ferro-piezoelectricity (i.e., spontaneous polarization Ps of 68.2 μC/cm2 and piezoelectric strain constant d33 of 228.3 pC/N) without complicated doping and alloying.
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