Ultrasensitive, Low-Power Oxide Transistor-Based Mechanotransducer with Microstructured, Deformable Ionic Dielectrics

  • Jang, Sukjin
  • Jee, Eunsong
  • Choi, Daehwan
  • Kim, Wook
  • Kim, Joo Sung
  • ... Kim, Do Hwan
  • 외 4명
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초록

The development of a highly sensitive artificial mechanotransducer that mimics the tactile sensing features of human skin has been a big challenge in electronic skin research. Here, we demonstrate an ultrasensitive, low-power oxide transistor-based mechanotransducer modulated by microstructured, deformable ionic dielectrics, which is consistently sensitive to a wide range of pressures from 1 to 50 kPa. To this end, we designed a viscoporoelastic and ionic thermoplastic polyurethane (i-TPU) with micropyramidal feature as a pressure-sensitive gate dielectric for the indium-gallium-zinc-oxide (IGZO) transistor-based mechanotransducer, which leads to an unprecedented sensitivity of 43.6 kPa(-1), which is 23 times higher than that of a capacitive mechanotransducer. This is because the pressure-induced ion accumulation at the interface of the i-TPU dielectric and IGZO semiconductor effectively modulates the conducting channel, which contributed to the enhanced current level under pressure. We believe that the ionic transistor-type mechanotransducer suggested by us will be an effective way to perceive external tactile stimuli over a wide pressure range even under low power (<4 V), which might be one of the candidates to directly emulate the tactile sensing capability of human skin.

키워드

ultrasensitivelow-power oxide transistorelectronic skinmechanotransducermicrostructured and deformable ionic dielectricsFLEXIBLE PRESSURE SENSORELECTRONIC SKINHIGH-SENSITIVITYARTIFICIAL SKINLARGE-AREATACTILEMATRIXCOMPOSITE
제목
Ultrasensitive, Low-Power Oxide Transistor-Based Mechanotransducer with Microstructured, Deformable Ionic Dielectrics
저자
Jang, SukjinJee, EunsongChoi, DaehwanKim, WookKim, Joo SungAmoli, VipinSung, TaehoonChoi, DukhyunKim, Do HwanKwon, Jang-Yeon
DOI
10.1021/acsami.8b09840
발행일
2018-09
유형
Article
저널명
ACS Applied Materials and Interfaces
10
37
페이지
31472 ~ 31479