Development and Characterization of Hafnium-Doped BaTiO3 Nanoparticle-Based Flexible Piezoelectric Devices

  • Jang, Haksu; 
  • Park, Hyeon-jun; 
  • Kim, Gwang-hyeon; 
  • Lee, Gyoungja; 
  • Ji, Jaehoon; 
  • ... Park, Kwi-il; 
  • 외 4명
Citations

SCOPUS

2

초록

Energy harvesting technology that converts the wasted energy resources into electrical energy is emerging as a semipermanent power source for self-powered electronics and wireless low-power sensor systems. Among the various energy conversion techniques, flexible piezoelectric energy harvesters (f-PEHs), using materials with piezoelectric effects, have attracted significant interest because they can harvest a small mechanical energy into electrical signals without constraints of time and space in various environments. In this study, we used a flexible piezoelectric composite film fabricated by dispersing BaHf<inf>x</inf>Ti<inf>(1</inf>-x)O<inf>3</inf> (x = 0, 0.01, 0.05, 0.1) piezoelectric powders inside a polymeric matrix to facilitate f-PEHs. The fabricated f-PEH with optimal Hf contents (x = 0.05) generated a maximum output voltage of 0.95 V and current signal of 130 nA with stable electrical/mechanical disabilities under periodically bending deformations. In addition, we demonstrated a cantilever-type f-PEH and investigated its potential as a sensor by characterizing the output performance under mechanical vibrations at various frequencies. This study provides the breakthrough for realizing self-powered energy harvesting and sensing systems by adopting the lead-free piezoelectric composites under vibrational environments. © 2024, Korean Sensors Society. All rights reserved.

키워드

BaTiO3; Energy harvesting; Flexible; Hafnium; Piezoelectric
제목
Development and Characterization of Hafnium-Doped BaTiO3 Nanoparticle-Based Flexible Piezoelectric Devices
저자
Jang, Haksu; Park, Hyeon-jun; Kim, Gwang-hyeon; Lee, Gyoungja; Ji, Jaehoon; Lee, Donghun; Jung, Young Hwa; Lee, Min-ku; Baek, Changyeon; Park, Kwi-il
DOI
10.46670/JSST.2024.33.1.34
발행일
2024-01
유형
Article
저널명
센서학회지
권
33
호
1
페이지
34 ~ 39