Omnidirectional Strain-Independent Organic Transistors Integrated onto an Elastomer Template with a Spontaneously Formed Fingerprint-Mimicking Microtopography

  • Choi, Giheon
  • Baek, Seolhee
  • Oh, Seungtaek
  • Cho, Hyewon
  • Yoo, Heemang
  • ... Choi, Hyun Ho
  • 외 2명
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초록

Here, a stretchable organic field-effect transistor (OFET) that exhibits constant electrical performance irrespective of the strain direction is demonstrated. The device is integrated onto an elastomer template with randomly oriented wrinkles on its surface; these wrinkles are spontaneously formed because of the differences in the thermal-mechanical properties of the plastic layer and the underlying elastomer. To achieve this microtopography, a relatively hard polymer, Parylene C, is ad-deposited onto an elastomer blended with polydimethylsiloxane and Ecoflex, resulting in PD-flex. Consequently, this microtopography offers stable device operations of a dinaphtho[2,3-b:2 ',3 '-f ]thieno[3,2-b]thiophene OFET array under 5% elongation irrespective of strain direction. Furthermore, the electrical performance is highly stable during 10 000 cycles of uniaxial strain, as verified by negligible modulation of the device's field-effect mobility, threshold voltage, and drain-current maximum. This approach allows nonstretchable device components to be relevant to stretchable electronics. More importantly, it is highly compatible to device alignment and provides stability under various kinds of mechanical deformations.

키워드

biomimeticselastomer templateorganic transistorsstrain sensorsstretchable electronicsFIELD-EFFECT TRANSISTORSTHIN-FILM TRANSISTORSPRESSURE SENSORSFLEXIBLE ELECTRONICSTRANSPARENTFABRICATIONCIRCUITSSKINDESIGNGATE
제목
Omnidirectional Strain-Independent Organic Transistors Integrated onto an Elastomer Template with a Spontaneously Formed Fingerprint-Mimicking Microtopography
저자
Choi, GiheonBaek, SeolheeOh, SeungtaekCho, HyewonYoo, HeemangChoi, YoonseukChoi, Hyun HoLee, Hwa Sung
DOI
10.1002/aelm.201900441
발행일
2019-12
유형
Article
저널명
Advanced Electronic Materials
5
12