Fast Response, Highly Sensitive and Selective Mixed-Potential H2 Sensor Based on (La, Sr)(Cr, Fe)O3-δ Perovskite
He Zhang1, Jianxin Yi1, Xi Jiang2
1State Key Laboratory of Fire Science, Department of Safety Science and Engineering, University of Science and Technology of China , Hefei, Anhui 230026, P.R. China.
A new mixed-potential sensor using La0.8Sr0.2Cr0.5Fe0.5O3-δ detects hydrogen (H2) with high sensitivity and selectivity. It shows fast response and recovery times, making it suitable for various applications.
Area of Science:
- Electrochemistry
- Materials Science
- Chemical Sensing
Background:
- Development of selective and sensitive hydrogen (H2) sensors is crucial for safety and industrial process monitoring.
- Mixed-potential sensors offer a promising alternative to traditional electrochemical sensors for gas detection.
Purpose of the Study:
- To develop and characterize a novel planar mixed-potential type sensor for H2 detection.
- To evaluate the sensor's performance, including response, selectivity, and response/recovery times.
- To investigate the sensing mechanism and its relation to electrode material properties.
Main Methods:
- Fabrication of a planar sensor with La0.8Sr0.2Cr0.5Fe0.5O3-δ sensing electrode, yttria-stabilized zirconia solid electrolyte, and Pt reference electrode.
- Electrochemical measurements to assess mixed-potential mechanism and sensor response.
- Testing sensor performance at various H2 concentrations (20-1000 ppm) and temperatures (up to 450 °C).
- Evaluation of selectivity against interfering gases like CH4, C3H8, CO, NO2, and NH3.
Main Results:
- The sensor exhibited a high and repeatable response (-143.6 mV for 1000 ppm H2 at 450 °C).
- Linear and logarithmic responses were observed in the 20-100 ppm and 100-1000 ppm ranges, respectively.
- Fast response (4 s) and recovery (24 s) times were achieved at 450 °C for 500 ppm H2.
- Excellent selectivity to H2 over other tested gases was demonstrated.
- Sensor performance correlated with the electrocatalytic activity of the perovskite electrode for H2 oxidation.
Conclusions:
- The developed La0.8Sr0.2Cr0.5Fe0.5O3-δ based mixed-potential sensor shows excellent performance for H2 detection.
- High electrocatalytic activity of the perovskite electrode contributes to efficient H2 sensing at higher concentrations.
- Further optimization may be needed to address limitations at lower H2 concentrations potentially due to gas diffusion.
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