Low-Cost Label-Free Electrical Detection of Artificial DNA Nanostructures Using Solution-Processed Oxide Thin-Film Transistors

  • Kim, Si Joon
  • Jung, Joohye
  • Lee, Keun Woo
  • Yoon, Doo Hyun
  • Jung, Tae Soo
  • 외 3명
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초록

A high-sensitivity, label-free method for detecting deoxyribonucleic acid (DNA) using solution-processed oxide thin-film transistors (TFTs) was developed. Double-crossover (DX) DNA nanostructures with different concentrations of divalent Cu ion (Cu2+) were immobilized on an In-Ga-Zn-O (IGZO) back-channel surface, which changed the electrical performance of the IGZO TFTs. The detection mechanism of the IGZO TFT-based DNA biosensor is attributed to electron trapping and electrostatic interactions caused by negatively charged phosphate groups on the DNA backbone. Furthermore, Cu2+ in DX DNA nanostructures generates a current path when a gate bias is applied. The direct effect on the electrical response implies that solution-processed IGZO TFTs could be used to realize low-cost and high-sensitivity DNA biosensors.

키워드

oxide semiconductorthin-film transistorssolution processDNA nanostructurebiosensorsSENSORFABRICATIONBIOSENSOR
제목
Low-Cost Label-Free Electrical Detection of Artificial DNA Nanostructures Using Solution-Processed Oxide Thin-Film Transistors
저자
Kim, Si JoonJung, JoohyeLee, Keun WooYoon, Doo HyunJung, Tae SooDugasani, Sreekantha ReddyPark, Sung HaKim, Hyun Jae
DOI
10.1021/am402857w
발행일
2013-11-13
유형
Article
저널명
ACS Applied Materials & Interfaces
5
21
페이지
10715 ~ 10720