ProtonationDriven Polarization Retention Failure in Nano-Columnar Lead-Free Ferroelectric Thin Films

  • Sheeraz, Muhammad; 
  • Ahn, Chang Won; 
  • Duong, Nguyen Xuan; 
  • Hwang, Soo-Yoon; 
  • Jang, Ji-Soo; 
  • ... Yang, Sang Mo; 
  • 외 15명
Citations

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7
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SCOPUS

6

초록

Understanding microscopic mechanisms of polarization retention characteristics in ferroelectric thin films is of great significance for exploring unusual physical phenomena inaccessible in the bulk counterparts and for realizing thin-film-based functional electronic devices. Perovskite (K,Na)NbO3 is an excellent class of lead-free ferroelectric oxides attracting tremendous interest thanks to its potential applications to nonvolatile memory and eco-friendly energy harvester/storage. Nonetheless, in-depth investigation of ferroelectric properties of (K,Na)NbO3 films and the following developments of nano-devices are limited due to challenging thin-film fabrication associated with nonstoichiometry by volatile K and Na atoms. Herein, ferroelectric (K,Na)NbO3 films of which the atomic-level geometrical structures strongly depend on thickness-dependent strain relaxation are epitaxially grown. Nanopillar crystal structures are identified in fully relaxed (K,Na)NbO(3)films to the bulk states representing a continuous reduction of switchable polarization under air environments, that is, polarization retention failures. Protonation by water dissociation is responsible for the humidity-induced retention loss in nano-columnar (K,Na)NbO3 films. The protonation-driven polarization retention failure originates from domain wall pinning by the accumulation of mobile hydrogen ions at charged domain walls for effective screening of polarization-bound charges. Conceptually, the results will be utilized for rational design to advanced energy materials such as photo-catalysts enabling ferroelectric tuning of water splitting.

키워드

ferroelectric; (K,Na)NbO3; thin film; polarization retention loss; epitaxy; CONDUCTIVITY
제목
ProtonationDriven Polarization Retention Failure in Nano-Columnar Lead-Free Ferroelectric Thin Films
저자
Sheeraz, Muhammad; Ahn, Chang Won; Duong, Nguyen Xuan; Hwang, Soo-Yoon; Jang, Ji-Soo; Kim, Eun-Young; Kim, Yoon Ki; Lee, Jaeyeong; Jin, Jong Sung; Bae, Jong-Seong; Lee, Myang Hwan; Han, Hyoung-Su; Kim, Gi-Yeop; Cho, Shinuk; Song, Tae Kwon; Yang, Sang Mo; Bu, Sang Don; Baek, Seung-Hyub; Choi, Si-Young; Kim, Ill Won; Kim, Tae Heon
DOI
10.1002/advs.202408784
발행일
2024-12
유형
Article
저널명
Advanced Science
권
11
호
48