Single Walled Carbon Nanotube Based Air Pocket Encapsulated Ultraviolet Sensor

ACS Sens. 2017 Nov 22;2(11):1679-1683. doi: 10.1021/acssensors.7b00585. Epub 2017 Oct 26.

Abstract

Carbon nanotube (CNT) is a promising candidate as a sensor material for the sensitive detection of gases/vapors, biomarkers, and even some radiation, as all these external variables affect the resistance and other properties of nanotubes, which forms the basis for sensing. Ultraviolet (UV) radiation does not impact the nanotube properties given the substantial mismatch of bandgaps and therefore, CNTs have never been considered for UV sensing, unlike the popular ZnO and other oxide nanwires. It is well-known that UV assists the adsorption/desorption characteristics of oxygen on carbon nanotubes, which changes the nanotube resistance. Here, we demonstrate a novel sensor structure encapsulated with an air pocket, where the confined air is responsible for the UV sensing mechanism and assures sensor stability and repeatability over time. In addition to the protection from any contamination, the air pocket encapsulated sensor offers negligible baseline drift and fast recovery compared to previously reported sensors. The air pocket isolated from the outside environment can act as a stationary oxygen reservoir, resulting in consistent sensor characteristics. Furthermore, this sensor can be used even in liquid environments.

Keywords: UV sensor; air pocket; baseline drift; carbon nanotubes; fast recovery.

MeSH terms

  • Air*
  • Capsules
  • Chemistry Techniques, Analytical / instrumentation*
  • Nanotubes, Carbon / chemistry*
  • Ultraviolet Rays*

Substances

  • Capsules
  • Nanotubes, Carbon