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A flower-like ZnO-Ag2O nanocomposite for label and mediator free direct sensing of dinitrotoluene.
Chakraborty, Urmila; Bhanjana, Gaurav; Adam, Jost; Mishra, Yogendra Kumar; Kaur, Gurpreet; Chaudhary, Ganga Ram; Kaushik, Ajeet.
Afiliação
  • Chakraborty U; Department of Chemistry, Centre of Advanced Studies in Chemistry, Panjab University Chandigarh 160014 India gurpreet14@pu.ac.in grc22@pu.ac.in.
  • Bhanjana G; Department of Chemistry, Centre of Advanced Studies in Chemistry, Panjab University Chandigarh 160014 India gurpreet14@pu.ac.in grc22@pu.ac.in.
  • Adam J; Mads Clausen Institute, University of Southern Denmark Alsion 2 6400 Sønderborg Denmark.
  • Mishra YK; Mads Clausen Institute, University of Southern Denmark Alsion 2 6400 Sønderborg Denmark.
  • Kaur G; Department of Chemistry, Centre of Advanced Studies in Chemistry, Panjab University Chandigarh 160014 India gurpreet14@pu.ac.in grc22@pu.ac.in.
  • Chaudhary GR; Department of Chemistry, Centre of Advanced Studies in Chemistry, Panjab University Chandigarh 160014 India gurpreet14@pu.ac.in grc22@pu.ac.in.
  • Kaushik A; Sophisticated Analytical Instrumentation Facility (SAIF)/CIL, Panjab University Chandigarh 160014 India.
RSC Adv ; 10(46): 27764-27774, 2020 Jul 21.
Article em En | MEDLINE | ID: mdl-35686162
ABSTRACT
2,4-Dinitrotoluene (2,4-DNT) is a nitro aromatic compound used as a raw material for trinitrotoluene (TNT) explosive synthesis along with several other industrial applications. Easy, rapid, cost-effective, and selective detection of 2,4-DNT is becoming essential due to its hepato carcinogenic nature and presence in surface as well as ground water as a contaminant. Keeping this in view, this research, for the first-time, reports the synthesis of novel ZnO-Ag2O composite nanoflowers on a gold (Au) substrate, to fabricate an electrochemical sensor for label-free, direct sensing of 2,4-DNT selectively. The proposed ZnO-Ag2O/Au sensor exhibits a sensitivity of 5 µA µM-1 cm-2 with a low limit of detection (LOD) of 13 nM, in a linear dynamic range (LDR) of 0.4 µM to 40 µM. The sensor showed reasonably high re-usability and reproducibility, with reliable results for laboratory and real-world samples.

Texto completo: 1 Bases de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Bases de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2020 Tipo de documento: Article