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- W2896494987 abstract "Methyl paraoxon (MOX) is a highly toxic organophosphate pesticide. It is recently reported that, MOX can enter the human body through ingestion, inhalation, or by dermal penetration. Due to its high non-degradability, it can bind to the tissues of fruits and vegetables. When it is consumed, it can imposes sub-chronic and chronic diseases, by the inhibition of acetylcholinesterase in human metabolism. Therefore, for the first time, we reported a detection of non-enzymatic electrochemical sensor based on 3D porous phase graphene oxide sheets encapsulated chalcopyrite ([email protected]2) nanocomposite. Hence, the development of reliable sensors for the real-time detection of pesticides is imperative to overcome practical limitations encountered in conventional methodologies. As synthesized [email protected]2 nanocomposite film screen-printed carbon modified electrode (SPCE) displays excellent electrocatalytic ability towards MOX. Under optimized working conditions, the modified electrode provides linear response range from 0.073 to 801.5 μM. The detection limit was obtained as 4.5 nM. The sensor displayed outstanding sensitivity as 17.97 μA μM−1 cm−2. This composite could be a promising electrode modifier for electrocatalysis. Finally, the [email protected]2 nanocomposite modified electrode shows greater real-time practicality in vegetable real samples. The obtained moral parameters from the developed method were compared with the authenticated HPLC results." @default.
- W2896494987 created "2018-10-26" @default.
- W2896494987 creator A5002027079 @default.
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- W2896494987 creator A5084401295 @default.
- W2896494987 date "2019-03-01" @default.
- W2896494987 modified "2023-10-03" @default.
- W2896494987 title "Graphene oxide encapsulated 3D porous chalcopyrite (CuFeS2) nanocomposite as an emerging electrocatalyst for agro-hazardous (methyl paraoxon) detection in vegetables" @default.
- W2896494987 cites W1852671360 @default.
- W2896494987 cites W1963787382 @default.
- W2896494987 cites W1964546830 @default.
- W2896494987 cites W1968827772 @default.
- W2896494987 cites W1970759145 @default.
- W2896494987 cites W1983878125 @default.
- W2896494987 cites W1988282587 @default.
- W2896494987 cites W1991843932 @default.
- W2896494987 cites W1997297806 @default.
- W2896494987 cites W2001642272 @default.
- W2896494987 cites W2003648205 @default.
- W2896494987 cites W2007263430 @default.
- W2896494987 cites W2007714468 @default.
- W2896494987 cites W2009420486 @default.
- W2896494987 cites W2009789896 @default.
- W2896494987 cites W2012451202 @default.
- W2896494987 cites W2013468452 @default.
- W2896494987 cites W2015422804 @default.
- W2896494987 cites W2015576647 @default.
- W2896494987 cites W2016383440 @default.
- W2896494987 cites W2017867652 @default.
- W2896494987 cites W2020159290 @default.
- W2896494987 cites W2021358274 @default.
- W2896494987 cites W2022877878 @default.
- W2896494987 cites W2027909693 @default.
- W2896494987 cites W2028372058 @default.
- W2896494987 cites W2029378620 @default.
- W2896494987 cites W2035123591 @default.
- W2896494987 cites W2049774579 @default.
- W2896494987 cites W2059910836 @default.
- W2896494987 cites W2061976763 @default.
- W2896494987 cites W2064856928 @default.
- W2896494987 cites W2065334735 @default.
- W2896494987 cites W2066904101 @default.
- W2896494987 cites W2067609431 @default.
- W2896494987 cites W2069008852 @default.
- W2896494987 cites W2071354862 @default.
- W2896494987 cites W2071628287 @default.
- W2896494987 cites W2072946950 @default.
- W2896494987 cites W2077799036 @default.
- W2896494987 cites W2081612482 @default.
- W2896494987 cites W2081981542 @default.
- W2896494987 cites W2082414325 @default.
- W2896494987 cites W2084577566 @default.
- W2896494987 cites W2086041893 @default.
- W2896494987 cites W2089969352 @default.
- W2896494987 cites W2091777721 @default.
- W2896494987 cites W2095090773 @default.
- W2896494987 cites W2095774921 @default.
- W2896494987 cites W2099753445 @default.
- W2896494987 cites W2108376819 @default.
- W2896494987 cites W2133237586 @default.
- W2896494987 cites W2139507035 @default.
- W2896494987 cites W2140746165 @default.
- W2896494987 cites W2178316268 @default.
- W2896494987 cites W2323328544 @default.
- W2896494987 cites W2345618588 @default.
- W2896494987 cites W2358814297 @default.
- W2896494987 cites W2396641716 @default.
- W2896494987 cites W2407077140 @default.
- W2896494987 cites W2414035452 @default.
- W2896494987 cites W2422814097 @default.
- W2896494987 cites W2424369152 @default.
- W2896494987 cites W2462226888 @default.
- W2896494987 cites W2508274757 @default.
- W2896494987 cites W2553781951 @default.
- W2896494987 cites W2584875206 @default.
- W2896494987 cites W2602188438 @default.
- W2896494987 cites W2610453665 @default.
- W2896494987 cites W2616562771 @default.
- W2896494987 cites W2623586958 @default.
- W2896494987 cites W2633365709 @default.
- W2896494987 cites W2765400074 @default.
- W2896494987 cites W2769327932 @default.
- W2896494987 cites W2774638558 @default.
- W2896494987 cites W2790224688 @default.
- W2896494987 cites W2793878015 @default.
- W2896494987 cites W2809704381 @default.
- W2896494987 doi "https://doi.org/10.1016/j.compositesb.2018.10.042" @default.
- W2896494987 hasPublicationYear "2019" @default.
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