Matches in SemOpenAlex for { <https://semopenalex.org/work/W2892571330> ?p ?o ?g. }
- W2892571330 endingPage "44" @default.
- W2892571330 startingPage "36" @default.
- W2892571330 abstract "In this work, the low-cost carbon nanorods assembled hierarchical meso-macroporous carbons networks aerogels (CNs-HMCNAs) was environment-friendly synthesized from a cheap and abundant biomass of apples (Malus pumila Mill) for the first time. The biomass of apples derived CNs-HMCNAs exhibited the unique hierarchical meso-macroporous structure with large specific surface area and high density of edge defective sites. At the CNs-HMCNAs modified GCE (CNs-HMCNAs/GCE), the electron transfer between the glassy carbon electrode (GCE) and the ascorbic acid (AA) (or hydrogen peroxide (H2O2)) was effectively enhanced, and thus induced a low overvoltage for AA electrooxidation (or H2O2 electroreduction). As an electrochemical AA (or H2O2) sensor, the CNs-HMCNAs/GCE exhibited wider linear range, lower detection limit, higher sensitivity and stability than GCE and the carbon nanotubes modified GCE (CNTs/GCE). In particular, the CNs-HMCNAs/GCE showed great potential feasibility in the practical determination of AA (in AA injection, Vitamin C tablet and kiwi juice) or H2O2 (in human urine, milk and beer)." @default.
- W2892571330 created "2018-10-05" @default.
- W2892571330 creator A5009273181 @default.
- W2892571330 creator A5010465278 @default.
- W2892571330 creator A5040990969 @default.
- W2892571330 creator A5045045561 @default.
- W2892571330 creator A5048035063 @default.
- W2892571330 creator A5049004421 @default.
- W2892571330 creator A5069191273 @default.
- W2892571330 creator A5080552508 @default.
- W2892571330 creator A5088825300 @default.
- W2892571330 date "2019-01-01" @default.
- W2892571330 modified "2023-10-18" @default.
- W2892571330 title "Low-cost and environment-friendly synthesis of carbon nanorods assembled hierarchical meso-macroporous carbons networks aerogels from natural apples for the electrochemical determination of ascorbic acid and hydrogen peroxide" @default.
- W2892571330 cites W1673405048 @default.
- W2892571330 cites W1963787382 @default.
- W2892571330 cites W1963932410 @default.
- W2892571330 cites W1968198327 @default.
- W2892571330 cites W1972596874 @default.
- W2892571330 cites W1981164146 @default.
- W2892571330 cites W1981189117 @default.
- W2892571330 cites W1990589060 @default.
- W2892571330 cites W1994288640 @default.
- W2892571330 cites W1997100609 @default.
- W2892571330 cites W2002448289 @default.
- W2892571330 cites W2005102129 @default.
- W2892571330 cites W2008302913 @default.
- W2892571330 cites W2009177712 @default.
- W2892571330 cites W2010744298 @default.
- W2892571330 cites W2013481208 @default.
- W2892571330 cites W2021259184 @default.
- W2892571330 cites W2028828070 @default.
- W2892571330 cites W2035911932 @default.
- W2892571330 cites W2042148196 @default.
- W2892571330 cites W2042933169 @default.
- W2892571330 cites W2047901418 @default.
- W2892571330 cites W2056266552 @default.
- W2892571330 cites W2057028548 @default.
- W2892571330 cites W2059787972 @default.
- W2892571330 cites W2061680435 @default.
- W2892571330 cites W2075223225 @default.
- W2892571330 cites W2078641611 @default.
- W2892571330 cites W2079179756 @default.
- W2892571330 cites W2089024181 @default.
- W2892571330 cites W2091015408 @default.
- W2892571330 cites W2094196154 @default.
- W2892571330 cites W2095211759 @default.
- W2892571330 cites W2095660340 @default.
- W2892571330 cites W2096504766 @default.
- W2892571330 cites W2100609022 @default.
- W2892571330 cites W2103224451 @default.
- W2892571330 cites W2110121788 @default.
- W2892571330 cites W2116373644 @default.
- W2892571330 cites W2126435383 @default.
- W2892571330 cites W2164475159 @default.
- W2892571330 cites W2170378324 @default.
- W2892571330 cites W2170386107 @default.
- W2892571330 cites W2213077533 @default.
- W2892571330 cites W2316208061 @default.
- W2892571330 cites W2321373640 @default.
- W2892571330 cites W2344089845 @default.
- W2892571330 cites W2408182550 @default.
- W2892571330 cites W2410415643 @default.
- W2892571330 cites W2460412755 @default.
- W2892571330 cites W2461423802 @default.
- W2892571330 cites W2510219049 @default.
- W2892571330 cites W2516776093 @default.
- W2892571330 cites W2517511499 @default.
- W2892571330 cites W2592684849 @default.
- W2892571330 cites W2597389812 @default.
- W2892571330 cites W2610957616 @default.
- W2892571330 cites W2612377691 @default.
- W2892571330 cites W2759338145 @default.
- W2892571330 cites W2770729940 @default.
- W2892571330 cites W2776935455 @default.
- W2892571330 cites W406488495 @default.
- W2892571330 cites W421609352 @default.
- W2892571330 doi "https://doi.org/10.1016/j.aca.2018.09.052" @default.
- W2892571330 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30567662" @default.
- W2892571330 hasPublicationYear "2019" @default.
- W2892571330 type Work @default.
- W2892571330 sameAs 2892571330 @default.
- W2892571330 citedByCount "28" @default.
- W2892571330 countsByYear W28925713302018 @default.
- W2892571330 countsByYear W28925713302019 @default.
- W2892571330 countsByYear W28925713302020 @default.
- W2892571330 countsByYear W28925713302021 @default.
- W2892571330 countsByYear W28925713302022 @default.
- W2892571330 countsByYear W28925713302023 @default.
- W2892571330 crossrefType "journal-article" @default.
- W2892571330 hasAuthorship W2892571330A5009273181 @default.
- W2892571330 hasAuthorship W2892571330A5010465278 @default.
- W2892571330 hasAuthorship W2892571330A5040990969 @default.
- W2892571330 hasAuthorship W2892571330A5045045561 @default.
- W2892571330 hasAuthorship W2892571330A5048035063 @default.
- W2892571330 hasAuthorship W2892571330A5049004421 @default.
- W2892571330 hasAuthorship W2892571330A5069191273 @default.
- W2892571330 hasAuthorship W2892571330A5080552508 @default.