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A Water-Stable Proton-Conductive Barium(II)-Organic Framework for Ammonia Sensing at High Humidity.

Kaimeng GuoLili ZhaoShihang YuWenyan ZhouZifeng LiGang Li
Published in: Inorganic chemistry (2018)
In view of environmental protection and the need for early prediction of major diseases, it is necessary to accurately monitor the change of trace ammonia concentration in air or in exhaled breath. However, the adoption of proton-conductive metal-organic frameworks (MOFs) as smart sensors in this field is limited by a lack of ultrasensitive gas-detecting performance at high relative humidity (RH). Here, the pellet fabrication of a water-stable proton-conductive MOF, Ba( o-CbPhH2IDC)(H2O)4] n (1) ( o-CbPhH4IDC = 2-(2-carboxylphenyl)-1 H-imidazole-4,5-dicarboxylic acid) is reported. The MOF 1 displays enhanced sensitivity and selectivity to NH3 gas at high RHs (>85%) and 30 °C, and the sensing mechanism is suggested. The electrochemical impedance gas sensor fabricated by MOF 1 is a promising sensor for ammonia at mild temperature and high RHs.
Keyphrases
  • metal organic framework
  • room temperature
  • gold nanoparticles
  • reduced graphene oxide
  • anaerobic digestion
  • heavy metals
  • tissue engineering
  • climate change
  • quantum dots
  • risk assessment
  • mass spectrometry
  • human health