Matches in SemOpenAlex for { <https://semopenalex.org/work/W2008137092> ?p ?o ?g. }
- W2008137092 endingPage "154" @default.
- W2008137092 startingPage "144" @default.
- W2008137092 abstract "In this paper, we report on the amino acids-/citric acid-/tartaric acid-assisted morphologically controlled hydrothermal synthesis of micro-/nanostructured crystalline copper oxides (CuO). These oxides were characterized by means of X-ray diffraction, nitrogen sorption, scanning electron microscopy, Fourier transform infrared, and UV–visible spectroscopy. The surface area of metal oxides depends on the amino acid used in the synthesis. The formation mechanisms were proposed based on the experimental results, which show that amino acid/citric acid/tartaric acid and hydrothermal time play an important role in tuning the morphology and structure of CuO. The catalytic activity of as-synthesized CuO was demonstrated by catalytic oxidation of methylene blue in the presence of hydrogen peroxide (H2O2). CuO synthesized using tyrosine was found to be the best catalyst compared to a variety of CuO synthesized in this study. CuO (synthesized in this study)-modified electrodes were used for the construction of non-enzymatic sensors, which displayed excellent electrocatalytic response for the detection of H2O2 and glucose compared to conventional CuO. The high electrocatalytic response observed for the CuO synthesized using tyrosine can be correlated with the large surface area, which enhances the accessibility of H2O2/glucose molecule to the active site that results in high observed current. The methodology adopted in the present study provides a new platform for the fabrication of CuO-based high-performance glucose and other biosensors." @default.
- W2008137092 created "2016-06-24" @default.
- W2008137092 creator A5018001083 @default.
- W2008137092 creator A5035766910 @default.
- W2008137092 creator A5047769040 @default.
- W2008137092 date "2012-03-01" @default.
- W2008137092 modified "2023-09-30" @default.
- W2008137092 title "Hydrothermal synthesis of CuO micro-/nanostructures and their applications in the oxidative degradation of methylene blue and non-enzymatic sensing of glucose/H2O2" @default.
- W2008137092 cites W1498196283 @default.
- W2008137092 cites W1964166105 @default.
- W2008137092 cites W1966267387 @default.
- W2008137092 cites W1971996564 @default.
- W2008137092 cites W1977910557 @default.
- W2008137092 cites W1978214150 @default.
- W2008137092 cites W1986967932 @default.
- W2008137092 cites W1987280028 @default.
- W2008137092 cites W1987398128 @default.
- W2008137092 cites W1988127621 @default.
- W2008137092 cites W1991803598 @default.
- W2008137092 cites W1991905717 @default.
- W2008137092 cites W1992023804 @default.
- W2008137092 cites W1992049637 @default.
- W2008137092 cites W1998247824 @default.
- W2008137092 cites W1999902788 @default.
- W2008137092 cites W2004473585 @default.
- W2008137092 cites W2004774386 @default.
- W2008137092 cites W2010298218 @default.
- W2008137092 cites W2015837062 @default.
- W2008137092 cites W2018024173 @default.
- W2008137092 cites W2018858346 @default.
- W2008137092 cites W2018872015 @default.
- W2008137092 cites W2020267609 @default.
- W2008137092 cites W2023330827 @default.
- W2008137092 cites W2023764303 @default.
- W2008137092 cites W2026739504 @default.
- W2008137092 cites W2030499648 @default.
- W2008137092 cites W2031568811 @default.
- W2008137092 cites W2032447345 @default.
- W2008137092 cites W2038381980 @default.
- W2008137092 cites W2039290798 @default.
- W2008137092 cites W2039623911 @default.
- W2008137092 cites W2039883135 @default.
- W2008137092 cites W2040563587 @default.
- W2008137092 cites W2043544093 @default.
- W2008137092 cites W2044842642 @default.
- W2008137092 cites W2052414732 @default.
- W2008137092 cites W2052712437 @default.
- W2008137092 cites W2052971462 @default.
- W2008137092 cites W2055422004 @default.
- W2008137092 cites W2058590754 @default.
- W2008137092 cites W2060307720 @default.
- W2008137092 cites W2067555177 @default.
- W2008137092 cites W2069025028 @default.
- W2008137092 cites W2072627796 @default.
- W2008137092 cites W2083451025 @default.
- W2008137092 cites W2084606339 @default.
- W2008137092 cites W2086616066 @default.
- W2008137092 cites W2087052454 @default.
- W2008137092 cites W2088559181 @default.
- W2008137092 cites W2091458152 @default.
- W2008137092 cites W2094738456 @default.
- W2008137092 cites W2096175346 @default.
- W2008137092 cites W2103801464 @default.
- W2008137092 cites W2104208035 @default.
- W2008137092 cites W2108773620 @default.
- W2008137092 cites W2133268448 @default.
- W2008137092 cites W2134313088 @default.
- W2008137092 cites W2139920822 @default.
- W2008137092 cites W2144848217 @default.
- W2008137092 cites W2150827236 @default.
- W2008137092 cites W2167507330 @default.
- W2008137092 cites W2170889388 @default.
- W2008137092 cites W2331477916 @default.
- W2008137092 doi "https://doi.org/10.1016/j.jcis.2011.12.074" @default.
- W2008137092 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/22284573" @default.
- W2008137092 hasPublicationYear "2012" @default.
- W2008137092 type Work @default.
- W2008137092 sameAs 2008137092 @default.
- W2008137092 citedByCount "193" @default.
- W2008137092 countsByYear W20081370922012 @default.
- W2008137092 countsByYear W20081370922013 @default.
- W2008137092 countsByYear W20081370922014 @default.
- W2008137092 countsByYear W20081370922015 @default.
- W2008137092 countsByYear W20081370922016 @default.
- W2008137092 countsByYear W20081370922017 @default.
- W2008137092 countsByYear W20081370922018 @default.
- W2008137092 countsByYear W20081370922019 @default.
- W2008137092 countsByYear W20081370922020 @default.
- W2008137092 countsByYear W20081370922021 @default.
- W2008137092 countsByYear W20081370922022 @default.
- W2008137092 countsByYear W20081370922023 @default.
- W2008137092 crossrefType "journal-article" @default.
- W2008137092 hasAuthorship W2008137092A5018001083 @default.
- W2008137092 hasAuthorship W2008137092A5035766910 @default.
- W2008137092 hasAuthorship W2008137092A5047769040 @default.
- W2008137092 hasConcept C127413603 @default.
- W2008137092 hasConcept C156622251 @default.
- W2008137092 hasConcept C160892712 @default.