Matches in SemOpenAlex for { <https://semopenalex.org/work/W2802542009> ?p ?o ?g. }
- W2802542009 endingPage "83" @default.
- W2802542009 startingPage "73" @default.
- W2802542009 abstract "In this paper, H2[email protected] composites were fabricated by the simple hydrothermal method through in-situ growth iron-based metal-organic frameworks (H2N-Fe-MIL-88B) on ordered mesoporous carbon (OMC). Compared with pure H2N-Fe-MIL-88B crystals, the introduction of OMC can shrink the size of H2N-Fe-MIL-88B, increase the specific surface area, decrease the electron transfer resistance and drastically improve the electrochemical performance of H2[email protected] The composite exhibits remarkable electrocatalytic activity for p-nitrotoluene (p-NT) reduction and hydrazine (N2H4) oxidation. Therefore, a novel electrochemical sensor based on H2[email protected] was constructed for the efficient detection of these two environmental pollutants, respectively. Under the optimal experimental conditions, the proposed sensor displays a wide linearity range for p-NT that is composed by two line segments (20–225 μM and 225–2600 μM) and the limit of detection (LOD) is 8 μM (S/N = 3). Meanwhile, the sensor also shows a linear response to N2H4 in the range of 0.006–0.061 μM and 0.061–611.111 μM with a high sensitivity of 20.1 μA/μM·cm2 in low concentration range as well as a very low LOD as 5.3 nM (S/N = 3). And the response time of the sensor for N2H4 detection is about 1 s. In addition, the proposed sensor shows satisfactory electrochemical stability, reproducibility, selectivity and practicability. H2[email protected] may be a splendid candidate for developing electrochemical sensors to detect environmental pollutants." @default.
- W2802542009 created "2018-05-17" @default.
- W2802542009 creator A5040990969 @default.
- W2802542009 creator A5047172853 @default.
- W2802542009 date "2018-09-01" @default.
- W2802542009 modified "2023-09-26" @default.
- W2802542009 title "In-situ growth of iron-based metal-organic framework crystal on ordered mesoporous carbon for efficient electrocatalysis of p -nitrotoluene and hydrazine" @default.
- W2802542009 cites W1873257946 @default.
- W2802542009 cites W1965231435 @default.
- W2802542009 cites W1966339317 @default.
- W2802542009 cites W1974412079 @default.
- W2802542009 cites W1981912868 @default.
- W2802542009 cites W1983737385 @default.
- W2802542009 cites W1985130551 @default.
- W2802542009 cites W1986186070 @default.
- W2802542009 cites W1986818240 @default.
- W2802542009 cites W1988745485 @default.
- W2802542009 cites W1990800459 @default.
- W2802542009 cites W1992303842 @default.
- W2802542009 cites W1994113648 @default.
- W2802542009 cites W1999636620 @default.
- W2802542009 cites W2006238622 @default.
- W2802542009 cites W2009177712 @default.
- W2802542009 cites W2011017900 @default.
- W2802542009 cites W2012326865 @default.
- W2802542009 cites W2022365365 @default.
- W2802542009 cites W2028316173 @default.
- W2802542009 cites W2031038667 @default.
- W2802542009 cites W2032024629 @default.
- W2802542009 cites W2033622091 @default.
- W2802542009 cites W2039684613 @default.
- W2802542009 cites W2042989582 @default.
- W2802542009 cites W2050052188 @default.
- W2802542009 cites W2050517360 @default.
- W2802542009 cites W2050541484 @default.
- W2802542009 cites W2050804317 @default.
- W2802542009 cites W2057606792 @default.
- W2802542009 cites W2066660041 @default.
- W2802542009 cites W2076756203 @default.
- W2802542009 cites W2079417777 @default.
- W2802542009 cites W2082688325 @default.
- W2802542009 cites W2122281045 @default.
- W2802542009 cites W2131313913 @default.
- W2802542009 cites W2164308611 @default.
- W2802542009 cites W2237716474 @default.
- W2802542009 cites W2260093315 @default.
- W2802542009 cites W2278737809 @default.
- W2802542009 cites W2326211557 @default.
- W2802542009 cites W2327197568 @default.
- W2802542009 cites W2331046039 @default.
- W2802542009 cites W2398341754 @default.
- W2802542009 cites W2400018485 @default.
- W2802542009 cites W2414784603 @default.
- W2802542009 cites W2416560953 @default.
- W2802542009 cites W2437761799 @default.
- W2802542009 cites W2513815066 @default.
- W2802542009 cites W2556534865 @default.
- W2802542009 cites W2562076183 @default.
- W2802542009 cites W2563427674 @default.
- W2802542009 cites W2567924412 @default.
- W2802542009 cites W2594754654 @default.
- W2802542009 cites W2606662807 @default.
- W2802542009 cites W2607317830 @default.
- W2802542009 cites W2611801857 @default.
- W2802542009 cites W2616258743 @default.
- W2802542009 cites W2617135014 @default.
- W2802542009 cites W2621807043 @default.
- W2802542009 cites W2626370870 @default.
- W2802542009 cites W2638487562 @default.
- W2802542009 cites W2657417962 @default.
- W2802542009 cites W2686242948 @default.
- W2802542009 cites W2736744456 @default.
- W2802542009 cites W2738888372 @default.
- W2802542009 cites W2747457020 @default.
- W2802542009 cites W2750902763 @default.
- W2802542009 cites W2752601386 @default.
- W2802542009 cites W2756296412 @default.
- W2802542009 cites W2759076196 @default.
- W2802542009 cites W2759242271 @default.
- W2802542009 cites W2766376342 @default.
- W2802542009 cites W2766875185 @default.
- W2802542009 cites W2773312557 @default.
- W2802542009 cites W2779499766 @default.
- W2802542009 doi "https://doi.org/10.1016/j.aca.2018.03.064" @default.
- W2802542009 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29776549" @default.
- W2802542009 hasPublicationYear "2018" @default.
- W2802542009 type Work @default.
- W2802542009 sameAs 2802542009 @default.
- W2802542009 citedByCount "33" @default.
- W2802542009 countsByYear W28025420092019 @default.
- W2802542009 countsByYear W28025420092020 @default.
- W2802542009 countsByYear W28025420092021 @default.
- W2802542009 countsByYear W28025420092022 @default.
- W2802542009 countsByYear W28025420092023 @default.
- W2802542009 crossrefType "journal-article" @default.
- W2802542009 hasAuthorship W2802542009A5040990969 @default.
- W2802542009 hasAuthorship W2802542009A5047172853 @default.
- W2802542009 hasConcept C104779481 @default.