Matches in SemOpenAlex for { <https://semopenalex.org/work/W3043298890> ?p ?o ?g. }
- W3043298890 endingPage "117528" @default.
- W3043298890 startingPage "117528" @default.
- W3043298890 abstract "Abstract Here, on-pot low-dimensional ZnO/NiO/Al2O3 nanoparticles (NPs) were synthesized by simple wet-chemical (co-precipitation) method and followed by the calcination at 500 °C into Muffle furnace. The details characterization of prepared NPs were executed using powder X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier Transform Infrared Spectroscopy (FTIR), Field Emission Scanning Electron Microscope (FESEM), Energy-dispersive X-ray spectroscopy (EDS), and UV–vis Spectroscopy (UV–vis). Using 5% Nafion adhesive, a layer of thin film of prepared ZnO/NiO/Al2O3 NPs was deposited onto glassy carbon electrode (GCE; surface area = 0.0316 cm2) to result the proposed enzyme-less l -glutamic acid (L-GA) sensor. From the details investigation of enzyme-less L-GA sensor applying electrochemical approach, a calibration curve was plotted from linear relation of current versus concentration of L-GA and the linearity of calibration plot was found in dynamic range (LDR) of 0.1 nM–0.01 mM. The slope of LDR (obtained from linear equation y = 0.915x+35.622) was used to calculate the sensitivity (S = m/A; 28.9557 μAμM−1cm−2), limit of detection (3SD/m; 95.35 ± 4.77 pM), and limit of quantification (10SD/m; 317.83 ± 15.89 pM) of L-GA sensor. The L-GA sensor was exhibited long-term stability in phosphate buffer phase, precious reproducibility, sensitivity, and short response time without any interference effects in presence of common electrolyte in biological samples. These features indicate that this research approach might be future prospective and promising sensor to detect L-GA in biomedical diagnosis." @default.
- W3043298890 created "2020-07-23" @default.
- W3043298890 creator A5007390345 @default.
- W3043298890 creator A5022269355 @default.
- W3043298890 creator A5049781595 @default.
- W3043298890 creator A5057215248 @default.
- W3043298890 creator A5072756187 @default.
- W3043298890 creator A5073883170 @default.
- W3043298890 creator A5080020210 @default.
- W3043298890 date "2020-11-01" @default.
- W3043298890 modified "2023-10-17" @default.
- W3043298890 title "Development of l-glutamic acid biosensor with ternary ZnO/NiO/Al2O3 nanoparticles" @default.
- W3043298890 cites W1963913659 @default.
- W3043298890 cites W1980021108 @default.
- W3043298890 cites W2011658568 @default.
- W3043298890 cites W2014058353 @default.
- W3043298890 cites W2016279830 @default.
- W3043298890 cites W2019713165 @default.
- W3043298890 cites W2021951643 @default.
- W3043298890 cites W2022466662 @default.
- W3043298890 cites W2029106184 @default.
- W3043298890 cites W2039699055 @default.
- W3043298890 cites W2057540746 @default.
- W3043298890 cites W2060168649 @default.
- W3043298890 cites W2060976938 @default.
- W3043298890 cites W2069279649 @default.
- W3043298890 cites W2071510827 @default.
- W3043298890 cites W2071956302 @default.
- W3043298890 cites W2072124274 @default.
- W3043298890 cites W2081730020 @default.
- W3043298890 cites W2087147633 @default.
- W3043298890 cites W2097154114 @default.
- W3043298890 cites W2105835583 @default.
- W3043298890 cites W2124989231 @default.
- W3043298890 cites W2125098526 @default.
- W3043298890 cites W2131932171 @default.
- W3043298890 cites W2132017511 @default.
- W3043298890 cites W2146970603 @default.
- W3043298890 cites W2147184489 @default.
- W3043298890 cites W2151726806 @default.
- W3043298890 cites W2163104928 @default.
- W3043298890 cites W2167743700 @default.
- W3043298890 cites W2274564330 @default.
- W3043298890 cites W2299213645 @default.
- W3043298890 cites W2318349821 @default.
- W3043298890 cites W2323904911 @default.
- W3043298890 cites W2327470840 @default.
- W3043298890 cites W2328667917 @default.
- W3043298890 cites W2346348567 @default.
- W3043298890 cites W2411173467 @default.
- W3043298890 cites W2507966071 @default.
- W3043298890 cites W2512579164 @default.
- W3043298890 cites W2520871330 @default.
- W3043298890 cites W2532728775 @default.
- W3043298890 cites W2547390346 @default.
- W3043298890 cites W2596038319 @default.
- W3043298890 cites W2607983943 @default.
- W3043298890 cites W2611164366 @default.
- W3043298890 cites W2612166671 @default.
- W3043298890 cites W2616025863 @default.
- W3043298890 cites W2735481272 @default.
- W3043298890 cites W2773348238 @default.
- W3043298890 cites W2782273177 @default.
- W3043298890 cites W2791133101 @default.
- W3043298890 cites W2808898650 @default.
- W3043298890 cites W2856863053 @default.
- W3043298890 cites W2892827712 @default.
- W3043298890 cites W2901126341 @default.
- W3043298890 cites W2911635239 @default.
- W3043298890 cites W2912929386 @default.
- W3043298890 cites W2913925096 @default.
- W3043298890 cites W2923631248 @default.
- W3043298890 cites W2930382852 @default.
- W3043298890 cites W2933293255 @default.
- W3043298890 cites W2942724426 @default.
- W3043298890 cites W2944098112 @default.
- W3043298890 cites W2944292981 @default.
- W3043298890 cites W2946318386 @default.
- W3043298890 cites W2946807199 @default.
- W3043298890 cites W2981806279 @default.
- W3043298890 cites W2989694274 @default.
- W3043298890 cites W2992387067 @default.
- W3043298890 cites W2992782008 @default.
- W3043298890 cites W2995312512 @default.
- W3043298890 cites W2995544209 @default.
- W3043298890 cites W2997832869 @default.
- W3043298890 cites W2998638083 @default.
- W3043298890 cites W3020545939 @default.
- W3043298890 cites W3027660528 @default.
- W3043298890 doi "https://doi.org/10.1016/j.jlumin.2020.117528" @default.
- W3043298890 hasPublicationYear "2020" @default.
- W3043298890 type Work @default.
- W3043298890 sameAs 3043298890 @default.
- W3043298890 citedByCount "20" @default.
- W3043298890 countsByYear W30432988902020 @default.
- W3043298890 countsByYear W30432988902021 @default.
- W3043298890 countsByYear W30432988902022 @default.
- W3043298890 countsByYear W30432988902023 @default.