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Graphene gas sensing using a non-contact microwave method

  • N. C.G. Black
  • , C. G. Liu
  • , R. Pearce
  • , B. Li
  • , S. A. Maier
  • , L. F. Cohen
  • , J. C. Gallop
  • , L. Hao

Research output: Contribution to journalArticleResearchpeer-review

Abstract

We report a non-contact CVD graphene gas sensing method that utilises a high Q microwave dielectric resonator perturbation technique. A graphene sample is coupled to the evanescent field of a dielectric resonator whereupon nitrogen dioxide (NO2), a p-doping gas, is detected by monitoring the change in the linewidth and frequency of the resonant mode. The resonant peak shape is dependent on the number of carriers in the graphene sheet. Therefore, the linewidth perturbation can be converted to a measurement of the graphene sheet resistance. To demonstrate the strength of this technique, sensor response curves for NO2 at different concentrations and temperatures are measured showing sub ppm sensitivity. This technique eliminates interactions between the trace gas and metal contacts that otherwise effect the sensor response of the graphene device.

Original languageEnglish
Article number395501
Number of pages6
JournalNanotechnology
Volume28
Issue number39
DOIs
Publication statusPublished - 8 Sept 2017
Externally publishedYes

Keywords

  • 2D materials
  • contactless
  • dielectric resonators
  • graphene
  • microwaves
  • trace gas sensing

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