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Design and fabrication of La-based perovskites incorporated with functionalized carbon nanofibers for the electrochemical detection of roxarsone in water and food samples.
John Felix, Mariya Antony; Rex Shanlee, Santhiyagu Sahayaraj; Chen, Shen-Ming; Ruspika, Sundaresan; Balaji, Ramachandran; Chandrasekar, Narendhar; Doss, Periyanayagam Arockia.
Affiliation
  • John Felix MA; Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan. smchen1957@gmail.com.
  • Rex Shanlee SS; Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan. smchen1957@gmail.com.
  • Chen SM; Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan. smchen1957@gmail.com.
  • Ruspika S; Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No.1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan. smchen1957@gmail.com.
  • Balaji R; Department of Electronics and Communication Engineering, Koneru Lakshmaiah Education Foundation, Andhra Pradesh 522302, India. balajiyashik@gmail.com.
  • Chandrasekar N; Department of BioNano Technology, Gachon University, Seongnam 13120, Gyeonggi, Republic of Korea.
  • Doss PA; Department of Chemistry, St. Joseph's College (Autonomous), Affiliated to Bharathidasan University, Tiruchirappalli, Tamilnadu 620002, India.
Anal Methods ; 16(18): 2857-2868, 2024 May 09.
Article de En | MEDLINE | ID: mdl-38639051
ABSTRACT
The pentavalent arsenic compound roxarsone (RSN) is used as a feed additive in poultry for rapid growth, eventually ending up in poultry litter. Poultry litter contains chicken manure, which plays a vital role as an affordable fertilizer by providing rich nutrients to agricultural land. Consequently, the extensive use of poultry droppings serves as a conduit for the spread of toxic forms of arsenic in the soil and surface water. RSN can be easily oxidized to release highly carcinogenic As(III) and As(IV) species. Thus, investigations were conducted for the sensitive detection of RSN electrochemically by developing a sensor material based on lanthanum manganese oxide (LMO) and functionalized carbon nanofibers (f-CNFs). The successfully synthesised LMO/f-CNF composite was confirmed by chemical, compositional, and morphological studies. The electrochemical activity of the prepared composite material was examined using cyclic voltammetry (CV) and differential pulse voltammetry (DPV). The obtained results confirmed that LMO/f-CNF showed enhanced electrocatalytic activity and improved current response with a good linear range (0.01-0.78 µM and 2.08-497 µM, respectively), exhibiting a low limit of detection (LOD) of 0.004 µM with a high sensitivity of 13.24 µA µM-1 cm-2 towards the detection of RSN. The noteworthy features of LMO/f-CNF composite with its superior electrochemical performance enabled reliable reproducibility, exceptional stability and reliable practical application in the analysis of tap water and food sample, affording a recovery range of 86.1-98.87%.
Sujet(s)

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Oxydes / Roxarsone / Titane / Composés du calcium / Techniques électrochimiques / Nanofibres / Lanthane Limites: Animals Langue: En Journal: Anal Methods Année: 2024 Type de document: Article Pays d'affiliation: Taïwan Pays de publication: Royaume-Uni

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Oxydes / Roxarsone / Titane / Composés du calcium / Techniques électrochimiques / Nanofibres / Lanthane Limites: Animals Langue: En Journal: Anal Methods Année: 2024 Type de document: Article Pays d'affiliation: Taïwan Pays de publication: Royaume-Uni