Multifunctional Self-Doped Nanocrystal Thin-Film Transistor Sensors

  • Choi, Dongsun
  • Park, Mihyeon
  • Jeong, Juyeon
  • Shin, Hang-Beum
  • Choi, Yun Chang
  • ... Jeong, Kwang Seob
Citations

WEB OF SCIENCE

12
Citations

SCOPUS

12

초록

Self-doping in nanocrystals allows accessing higher quantum states. The electrons occupying the lowest energy state of the conduction band form a metastable state that is very sensitive to the electrostatic potential of the surface. Here, we demonstrate that the high charge sensitivity of the self-doped HgSe colloidal quantum dot solid can be used for sensing three different targets with different phases through self-doped HgSe nanocrystal/ZnO thin-film transistors: the environmental gases (CO2 gas, NO gas, and H2S gas); mid-IR photon; and biothiol (L-cysteine) molecules. The self-doped quantum dot solid detects the targets through different mechanisms. The physisorption of the CO2 gas and the NO gas molecules, and the mid-IR photodetection show reversible processes, whereas the chemisorption of L-cysteine biothiol and H2S gas molecules shows irreversible processes. Considering the quenching of mid-IR intraband photoluminescence of the HgSe colloidal quantum dot solid by the vibrational mode of the CO2 gas molecule, sensing the CO2 gas could be involved in the electronic-to-vibrational energy transfer. The target molecules are quantitatively analyzed, and the limits of detection for CO2 and L-cysteine are 250 ppm and 10 nM, respectively, which are comparable to the performance of commercial detectors.

키워드

self-doped nanocrystalgas sensorprobe-free biosensormid-IR photodetectorTFT sensorQUANTUM DOTSTRANSITION
제목
Multifunctional Self-Doped Nanocrystal Thin-Film Transistor Sensors
저자
Choi, DongsunPark, MihyeonJeong, JuyeonShin, Hang-BeumChoi, Yun ChangJeong, Kwang Seob
DOI
10.1021/acsami.8b16083
발행일
2019-02-20
유형
Article
저널명
ACS Applied Materials & Interfaces
11
7
페이지
7242 ~ 7249