Abstract − Analytical Sciences, 35(12), 1299 (2019).
A Solid-state Electrochemiluminescence Sensor for Detecting Glutathione with a Graphite-phase Carbon Nitride/Silica Modified Glassy Carbon Electrode
  Xueling SHAN,* Xiaomeng SHAN,* Tao PAN,* Fanzhuo DAI,* Xiaohui CHEN,** Wenchang WANG,* and Zhidong CHEN*
  *Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, School of Petrochemical Engineering, Changzhou University, Changzhou, China
**School of Chemistry and Material Engineering, Changzhou Vocational Institute of Engineering, Changzhou, China
  **School of Chemistry and Material Engineering, Changzhou Vocational Institute of Engineering, Changzhou, China
A solid-state electrochemiluminescence (ECL) sensor for the detection of reduced glutathione (GSH) based on a g-C3N4/SiO2 modified glass carbon electrode (GCE) has been developed in this research.  The g-C3N4, which is employed as a luminophore, is simply prepared and exhibits an excellent ECL response.  Mesoporous silica hollow spheres (SiO2) with a large specific surface area are introduced here to increase the loading amount of g-C3N4.  Compared to a g-C3N4 modified GCE, the g-C3N4/SiO2 modified GCE displays a much higher ECL intensity.  A high enhancement effect on the ECL intensity of g-C3N4/SiO2 modified GCE is obtained in the presence of GSH in the electrolyte.  Moreover, the enhanced ECL intensity shows a good linear relationship to the GSH concentration in the range from 1.0  ×  10−7 to 5.0  ×  10−4 M, with a detection limit of 2.0  ×  10−8 M (6.1 ng/mL).  Besides, the ECL sensor exhibits a good anti-interference ability and has been successfully applied in the detection of GSH in commercial samples.  The proposed sensor provides a promising platform for life science.
  
    J-STAGE: 
View this article in J-STAGE
  
 Back to the Table of Contents
 Back to the Table of Contents
