4.7 Article

Selective ammonia sensing response of vanadium doped cerium oxide nanorods wrapped reduced graphene oxide electrodes at room temperature

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 336, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2021.129679

关键词

Hydrothermal; Nanorods; Graphene layers; Gas sensor; Ammonia

资金

  1. MHRD OF INDIA under RUSA 2.0 scheme
  2. Alagappa University

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A novel ammonia gas sensing electrode material with excellent selectivity and stability was reported, showing a high sensitivity of 85% towards NH3 at 50 ppm concentration, with a response time of 104 seconds and a recovery time of 47 seconds. The material achieved efficient detection of ammonia gas through the assembly of nanorods on its surface, providing high electrical conductivity. This composite material demonstrated outstanding stability at room temperature, maintaining 99% of its initial sensitivity after 50 days.
Drastically increasing air pollution has been perceived as a vital agitation and its detection has become an unavoidable area of interest for many researchers. Room temperature operative gas sensing electrodes with long term stability and highly selective feature are crucial to meet the miniaturization of gas sensing devices. Ammonia (NH3) is an irritant gas consists of pungent odor in nature. Here, we report a synthesis method for the composite of vanadium doped cerium oxide (VCeO2) wrapped reduced graphene oxide (rGO) for NH3 sensing via two step sonication assisted hydrothermal method. The physiochemical and morphological characterization were examined well in detail. The results indicate the high crystalline VCeO2 nanoparticles were assembled as nanorods over the rGO sheets in a regular manner. The chemically active defect sites on the rGO sheets enhance the gas molecule adsorption and provide high electrical conductivity. This sensing electrode was exposed towards various target gases and it offered excellent selectivity and good sensitivity of 85 % towards 50 ppm of NH3 with response time 104 s and recovery time 47 s. In addition, this electrode maintains 99 % of its initial sensitivity after 50 days which proves its high stability due to the room temperature operation. This prepared composite material will be a good candidate against NH3 detection.

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