Self-Powered Chemical Sensing Driven by Graphene-Based Photovoltaic Heterojunctions with Chemically Tunable Built-In Potentials

  • Lee, Donghun
  • Park, Haeli
  • Han, Soo Deok
  • Kim, Su Han
  • Huh, Woong
  • ... Park, Won Il
  • 외 5명
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초록

Ultralow power chemical sensing is essential toward realizing the Internet of Things. However, electrically driven sensors must consume power to generate an electrical readout. Here, a different class of self-powered chemical sensing platform based on unconventional photovoltaic heterojunctions consisting of a top graphene (Gr) layer in contact with underlying photoactive semiconductors including bulk silicon and layered transition metal dichalcogenides is proposed. Owing to the chemically tunable electrochemical potential of Gr, the built-in potential at the junction is effectively modulated by absorbed gas molecules in a predictable manner depending on their redox characteristics. Such ability distinctive from bulk photovoltaic counterparts enables photovoltaic-driven chemical sensing without electric power consumption. Furthermore, it is demonstrated that the hydrogen H₂ sensing properties are independent of the light intensity, but sensitive to the gas concentration down to the 1 ppm level at room temperature. These results present an innovative strategy to realize extremely energy-efficient sensors, providing an important advancement for future ubiquitous sensing.

키워드

2D materialschemical sensorsgrapheneheterostructuresphotovoltaicSOLAR-CELLSSENSORVOLTAGEARRAYS
제목
Self-Powered Chemical Sensing Driven by Graphene-Based Photovoltaic Heterojunctions with Chemically Tunable Built-In Potentials
저자
Lee, DonghunPark, HaeliHan, Soo DeokKim, Su HanHuh, WoongLee, Jae YoonKim, Yoon SeokPark, Myung JinPark, Won IlKang, Chong-YunLee, Chul-Ho
DOI
10.1002/smll.201804303
발행일
2019-01
유형
Article
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