One-step chemical treatment to design an ideal nanospacer structure for a highly sensitive and transparent pressure sensor

  • Woo, Ho Kun
  • Kim, Haneun
  • Jeon, Sanghyun
  • Lee, Woo Seok
  • Ahn, Junhyuk
  • ... Oh, Soong Ju
  • 외 2명
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초록

Highly transparent and sensitive pressure sensors with a wide detection range were developed by a simple process using silver nanowires and ZnO nanocrystals (NCs) without lithography. The open mesh structured spacers were sucessfully designed by one-step chemical treatment involving a ligand exchange process on the ZnO NC thin films, leading to improved sensitivity, responsivity and transparency. The device performance analyses along with chemical, structural, and electronic characterization studies reveal that the chemically designed pressure sensor has a record-breaking sensitivity of 3.23 x 10(3) kPa(-1), a large detection range of up to 75 kPa, excellent reliability, and high transparency of 85% in the visible-light region. The origin of improved sensitivity was explained with the contact area variation theory. We also demonstrate that the pressure sensor fabricated by the all-solution-based facile process can be employed in various applications such as wearable sensors for measurement of the human pulse and attachable electronics for an electronic skin with a wide sensing range of pressures.

키워드

FIELD-EFFECT TRANSISTORSARTIFICIAL SKINELECTRONIC SKINLARGE-AREALIGAND-EXCHANGESTRAINFILMCOMPOSITEENHANCEMATRIX
제목
One-step chemical treatment to design an ideal nanospacer structure for a highly sensitive and transparent pressure sensor
저자
Woo, Ho KunKim, HaneunJeon, SanghyunLee, Woo SeokAhn, JunhyukBang, JunsungKang, Min SuOh, Soong Ju
DOI
10.1039/c9tc00820a
발행일
2019-05-07
유형
Article
저널명
Journal of Materials Chemistry C
7
17
페이지
5059 ~ 5066