Thermal stability and Young's modulus of mechanically exfoliated flexible mica

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초록

In recent years, mica has been successfully used as a substrate for the growth of flexible epitaxial ferroelectric oxide thin films. Here, we systematically investigated the flexibility of mica in terms of its thickness, repeated bending/unbending, extremely hot/cold conditions, and successive thermal cycling. A 20-mu m-thick sheet of mica is flexible even up to the bending radius of 5 mm, and it is durable for 20,000 cycles of up- and down-bending. In addition, the mica shows flexibility at 10 and 773 K, and thermal cycling stability for the temperature variation of ca. 400 K. Compared with the widely used flexible polyimide, mica has a significantly higher Young's modulus (ca. 5.4 GPa) and negligible hysteresis in the force-displacement curve. These results show that mica should be a suitable substrate for piezoelectric energy-harvesting applications of ferroelectric oxide thin films at extremely low and high temperatures.

키워드

Flexible micaThermal stabilityYoung's modulusTHIN-FILMS
제목
Thermal stability and Young's modulus of mechanically exfoliated flexible mica
저자
Jin, Da WoonKo, Young JoonKong, Dae SolKim, Hyun KiHa, Jae-HyunLee, MinbaekHong, Jung-IlJung, Jong Hoon
DOI
10.1016/j.cap.2018.09.002
발행일
2018-12
유형
Article
저널명
Current Applied Physics
18
12
페이지
1486 ~ 1491