Surface modulation and structural engineering of graphitic carbon nitride for electrochemical sensing applications

Author(s):  
Ann Mariella Babu ◽  
Rijo Rajeev ◽  
Ditto Abraham Thadathil ◽  
Anitha Varghese ◽  
Gurumurthy Hegde
2018 ◽  
Vol 826 ◽  
pp. 207-216 ◽  
Author(s):  
Pitchaimani Veerakumar ◽  
Chellakannu Rajkumar ◽  
Shen-Ming Chen ◽  
Balamurugan Thirumalraj ◽  
King-Chuen Lin

2020 ◽  
Vol 187 (12) ◽  
Author(s):  
Balasubramanian Sriram ◽  
Jeena N. Baby ◽  
Sea-Fue Wang ◽  
Mani Govindasamy ◽  
Mary George ◽  
...  

2017 ◽  
Vol 8 ◽  
pp. 150-162 ◽  
Author(s):  
Hui Lin Lee ◽  
Zdeněk Sofer ◽  
Vlastimil Mazánek ◽  
Jan Luxa ◽  
Chun Kiang Chua ◽  
...  

Author(s):  
Hattna Shivarudraiah Vedhavathi ◽  
Ballur Prasanna Sanjay ◽  
Mahesh Basavaraju ◽  
Beejaganahalli Sangameshwara Madhukar ◽  
Ningappa Kumara Swamy

In the present work, we have synthesized an iron-decorated graphitic carbon nitride (Fe@g-C3N4) composite and employed it for electrochemical sensing of ciprofloxacin (CFX). The physicochemical characteristics of the Fe@g-C3N4 composite were analyzed with X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy-dispersive X-ray diffraction (EDX) spectroscopy methods. Further, the pencil graphite electrode (PGE) was modified with Fe@g-C3N4 composite to get PGE/Fe@g-C3N4 electrode and characterized the resultant electrode by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). Differential pulse voltammetry (DPV) was employed to determine the effect of concentration and interferents. The modified PGE/Fe@g-C3N4 electrode demonstrated the exceptional electrochemical performance for CFX identification and quantification with a LOD of 5.4 nM, a wide linear range of 0.001-1.0 µM, and high sensitivity of 0.0018 µA mM-1 cm-2. Besides, Fe@g-C3N4 modified PGE showed remarkable recovery results in qualitative analysis of CFX in human blood specimens. This research advocates that the Fe@g-C3N4 composite acts as an excellent transducer material in the electrochemical sensing of CFX in blood and standard samples. Further, the proposed strategy deduces that the PGE/Fe@g-C3N4 sensor can be a prospective candidate for the dynamic determination of CFX in blood serum and possibly ratified as an exceptional drug sensor for therapeutic purposes.


RSC Advances ◽  
2016 ◽  
Vol 6 (101) ◽  
pp. 98893-98898 ◽  
Author(s):  
Yi-Ting Wang ◽  
Ning Wang ◽  
Ming-Li Chen ◽  
Ting Yang ◽  
Jian-Hua Wang

Proton-functionalized g-C3N4 was synthesized using thiourea and HNO3 as source materials under microwave for only 3 min.


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