Skip to main navigation Skip to search Skip to main content

Electrochemical Response of Mixed Conducting Perovskite Enables Low-Cost High-Efficiency Hydrogen Sensing

  • ZB Zhang
  • , JX Yi
  • , HJ Han
  • , YQ Meng
  • , H Zhang
  • , Y Jiang

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract


High-performance noble metal-free gas sensors are crucial for widespread applications in various areas. Non-Nernstian electrochemical sensors have attracted tremendous attention, but are limited by the high cost and low efficiency of Pt electrode. Moreover, responses from different electrodes usually have the same polarity, degrading the sensor performance. Here we report a reverse response on a series of mixed ionic-electronic conductors (MIECs). Exemplary SrFe0.5Ti0.5O3-6 (SFT50) perovskite shows excellent H-2 sensing properties, including high sensitivity and selectivity, humidity resistance, and long-term stability. Strikingly, the response is positive, as opposed to the usual one. Such an unusual response is ascribed to the change of the surface electrostatic potential due to the gas chemical reaction, which outcompetes traditional mechanisms, thereby reversing the response polarity. A conceptual noble-metal-free sensor with dual oxide electrodes of opposite polarity is designed by substituting SFT50 for the benchmark Pt, achieving a 1.5-2.0x increase in H-2 response, sensitivity, and selectivity and a low limit of detection of 16 ppb. The ideal unity of excellent sensing and unusual polarity for MIECs can be used to optimize the performance of a variety of conventional sensors while reducing the cost. Our findings provide new insights into electrochemical gas sensing and offer a facile approach for developing low-cost high-performance gas sensors.
Original languageEnglish
Pages (from-to)33580-33588
Number of pages9
JournalACS Applied Materials and Interfaces
Volume14
Issue number29
Early online dateJul 27 2022
DOIs
StatePublished - Jul 27 2022
Externally publishedYes

Keywords

  • Electrochemical
  • Gas sensor
  • Mixed conductor
  • Perovskite
  • Potential

Fingerprint

Dive into the research topics of 'Electrochemical Response of Mixed Conducting Perovskite Enables Low-Cost High-Efficiency Hydrogen Sensing'. Together they form a unique fingerprint.

Cite this