Programming mechanoluminescent behaviors of 3D printed cellular structures

  • Zhao, Jiayu; 
  • Song, Seongkyu; 
  • Mu, Xuan; 
  • Jeong, Soon Moon; 
  • Bae, Jinhye
Citations

WEB OF SCIENCE

35
Citations

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36

초록

Mechanoluminescence (ML) materials enable the transformation of mechanical stimuli into optical signals. However, current ML devices have limited luminescent programmability and mechanical tunability due to the relatively simple geometries as restricted by the conventional fabrication techniques. Here, we develop a strategy that is applicable for various types of zinc sulfide (ZnS)-based phosphors for allowing the fabrication of ML elastomer into complex 2D or 3D geometries with periodic cellular structures. We demonstrate that different cellular structures with tunable mechanical properties enable programmable structure-dependent ML behaviors including anisotropic and isotropic luminescence. We further exploit the quantitative structure-stress-luminescence relationship, which provides fundamental knowledge support for designing next-generation ML-based stress sensors and wearable devices.

키워드

Mechanoluminescence; 3D printing; Granular materials; Elastomers; Stress sensors; SKIN; PRESSURE; STRESS
제목
Programming mechanoluminescent behaviors of 3D printed cellular structures
저자
Zhao, Jiayu; Song, Seongkyu; Mu, Xuan; Jeong, Soon Moon; Bae, Jinhye
DOI
10.1016/j.nanoen.2022.107825
발행일
2022-12
유형
Article
저널명
Nano Energy
권
103

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