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基于第一性原理的PbTiO3压电陶瓷材料掺杂碱土金属研究

王心童 贾萌萌 宋宗祎 孙曜 李金花 纪登辉 文广玉

西北工程技术学报2024,Vol.23Issue(4):298-304,7.
西北工程技术学报2024,Vol.23Issue(4):298-304,7.

基于第一性原理的PbTiO3压电陶瓷材料掺杂碱土金属研究

Investigation of the Doped Alkaline Earth Metals in PbTiO3 Piezoelectric Ceramic Materials Based on the First Principle

王心童 1贾萌萌 1宋宗祎 1孙曜 1李金花 1纪登辉 1文广玉2

作者信息

  • 1. 石家庄学院理学院,河北省物联网区块链融合重点实验室,河北 石家庄 050035
  • 2. 河北师范大学物理学院,河北省新型薄膜材料实验室,河北 石家庄 050024
  • 折叠

摘要

Abstract

The quantum mechanical square potential barrier model was applied to screen out three alkaline earth metal cations,Ca2+,Sr2+,and Ba2+,that can be doped into the Pb sites of PbTiO3 piezoelectric ceramic materials.Using the Materials Studio software,nine structural configurations of Pb1-xMxTiO3(x=0.037,0.074,0.111,where M=Ca,Sr,Ba)were constructed.The CASTEP module was used to perform geometric optimization of their structures and calculate their physical properties.As the doping amount of alkaline earth metals increasing,the results indicate that the crystal structure of doped Pb1₋xMxTiO3 is affected by the doped elements and the concentration,which determined the piezoelectric properties.The differences between the alkaline earth metal cations and Pb2+ions lead to p-type doping,and the bandgap exhibits a nonlinear downward trend.Notably,when x=0.074,Pb1₋xMxTiO3 transforms from a direct semiconductor material to an indirect semiconductor material.The Fermi level gradually decreases,and the conduction band minimum also changes with the doped elements and their concentrations,altering the interaction between electrons reflected by the"pseudo-gap".In summary,the doping of Ca2+,Sr2+,and Ba2+ affects the charge distribution within the material,thereby modulating its piezoelectric properties.

关键词

压电陶瓷/PbTiO3/掺杂机制/方势垒模型/CASTEP模块

Key words

piezoelectric ceramics/PbTiO3/doped mechanism/square barrier model/CASTEP module

分类

信息技术与安全科学

引用本文复制引用

王心童,贾萌萌,宋宗祎,孙曜,李金花,纪登辉,文广玉..基于第一性原理的PbTiO3压电陶瓷材料掺杂碱土金属研究[J].西北工程技术学报,2024,23(4):298-304,7.

基金项目

河北省大学生创新创业训练计划(S202210102010) (S202210102010)

河北省三三三人才资助项目(C20231001) (C20231001)

石家庄学院博士科研启动基金项目(20BS024) (20BS024)

西北工程技术学报

1671-7244

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