Pyrochlore stannate synthesis: Unlocking temperature's influence on electrochemical detection of caffeic acid in food samples

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초록

The annealing temperature in metal oxide synthesis significantly influences material properties, impacting crystal structure, atom arrangement, morphology, and phase formation. Ytterbium stannate (Yb2(Sn2O7)), possessing a pyrochlore structure, was coprecipitated and denoted as YbSnO-X (X = 1 to 5), with annealing temperatures ranging from 400 to 1200 degrees C. Comprehensive analyses explored YbSnO-X properties for caffeic acid (CA), encompassing crystalline structure, morphology, particle size, thermal behavior, specific surface area, porosity, and sensing characteristics. When applied to a modified glassy carbon electrode, annealed YbSnO-X samples underwent assessment for kinetic parameters, maximum redox current, CA quantity influence, and electrolyte pH impact during voltammetry. The YbSnO-2 modified electrode displayed a 120 nM detection limit, showcasing heightened sensitivity and selectivity across various compounds. An evaluation of authentic CAcontaining food samples illustrated superior recovery rates, confirming the effectiveness of optimized YbSnO-2 as an electrode modifier for electrochemical CA detection.

키워드

Ytterbium stannateAnnealing temperaturePhenolic compoundsAuthentic food sampleCONDUCTIONCONSTANTSENSORFILM
제목
Pyrochlore stannate synthesis: Unlocking temperature's influence on electrochemical detection of caffeic acid in food samples
저자
Muthukutty, BalamuruganSivakumar, ManiKim, Seong-CheolAlagumalai, KrishnapandiLee, Daeho
DOI
10.1016/j.mtchem.2024.102402
발행일
2024-12
유형
Article
저널명
MATERIALS TODAY CHEMISTRY
42