1
Return

Synergistic defect-rich S-doped g-C3N4 nanohybrid for high-performance electrochemical sensing of clindamycin phosphate via nanostructured interface

delete2026-05-23
delete0
PRE
AI
P
Padmini R. Kulkarni
J
Jyothi C. Abbar
R
Ravichandra Rangappa
S
Shekappa D. Lamani *
DOI:10.1016/j.solidstatesciences.2026.108310delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This study depicts the effective synthesis of graphitic carbon nitride (GCN) and sulfur doped graphitic carbon nitride (S-GCN). The prepared GCN and S-GCN were subjected to various characterisation techniques to investigate the surface functionality and crystalline nature with the XRD and FT-IR respectively and surface properties were analysed with the SEM and EDX. This assisted the development of a novel and well modified nanohybrid with incorporation of multiwalled carbon nanotubes i.e. S-GCN/MWCNTs/GCE for the electrochemical detection of antibiotic clindamycin phosphate over the potential range of 0.6V to 1.1V against the silver/silver chloride electrode with the detection and quantification limit of 1.88 x 10(-7) M and 6.62 x 10(-7) M respectively. Various inorganic ion and organic molecules did not interfere with the clindamycin phosphate during its sensing. Additionally, the developed S-GCN/MWCNTs/GCE nanohybrid can be applied to real sample and environmental sample analysis and holds the potential for broad applications in the CMP sensing.
Keywords:
Clindamycin phosphate
Graphitic carbon nitride
Modified nanohybrid
Cost-effective sensing
Fast response time

Journal

Solid State Sciences cover
Solid State Sciences
IF:
3.3
Papers:
6.0K
Citations:
9.2K

Organization

V
Visvesvaraya Technological University
Scholars:
296
Papers: 157
Citations: 940
Cited Papers

Cited Papers

Citing Papers

Citing Papers