Matches in SemOpenAlex for { <https://semopenalex.org/work/W3127272704> ?p ?o ?g. }
- W3127272704 endingPage "100030" @default.
- W3127272704 startingPage "100030" @default.
- W3127272704 abstract "A facile strategy was developed for the fabrication of new nanoparticles-templated carbonaceous coating on a Nitinol (NiTi) fiber substrate. The NiTi fiber was first electrochemically anodized for the growth of nickel-titanium oxide nanoparticles (NiTiONPs). Thereafter, NiTiONPs were used as supporting templates for the derivation of carbonaceous nanoparticles (CNPs) via the hydrothermal reaction of glucose followed by carbonization in nitrogen atmosphere. The adsorption performance of the [email protected] and the [email protected]@CNPs fibers was evaluated using typical aromatic compounds as model analytes coupled to high-performance liquid chromatography with UV detection. The results clearly indicated that the [email protected] coating exhibited higher extraction capability for polycyclic aromatic hydrocarbons (PAHs) than UV filters. For this purpose, several parameters of SPME with the [email protected]@CNPs fiber were examined for the enrichment of PAHs in water. Under the obtained conditions, the calibration curves were linear over the concentration ranges of 0.05–200 μg·L–1 with correlation coefficients above 0.999. Limits of detection were between 0.012 μg·L–1 and 0.15 μg·L–1. Relative standard deviations (RSDs) of the intra-day and the inter-day analyses with the single fiber varied from 3.03% to 5.34% and from 3.31% to 5.82%, respectively. Moreover, RSDs for the fiber-to-fiber reproducibility with five fibers fabricated in different batches were between 4.89% and 7.10%. Finally, the applicability of the proposed method was validated via determination of target PAHs in real water samples with the relative recoveries of 82.6%–114%. Notably, the superior extraction performance of the fabricated fiber was still maintained even after more than 250 extraction/desorption cycles due to strong adhesion of the CNPs coating to NiTiONPs." @default.
- W3127272704 created "2021-02-15" @default.
- W3127272704 creator A5013158456 @default.
- W3127272704 creator A5046135731 @default.
- W3127272704 creator A5048144587 @default.
- W3127272704 creator A5053032280 @default.
- W3127272704 creator A5081573302 @default.
- W3127272704 creator A5083967189 @default.
- W3127272704 date "2021-08-01" @default.
- W3127272704 modified "2023-10-16" @default.
- W3127272704 title "Derivation of carbonaceous nanoparticles from glucose-modified nickel-titanium oxide nanoparticles grown on Nitinol fiber for solid phase microextraction of several polycyclic aromatic hydrocarbons in water samples" @default.
- W3127272704 cites W1972551305 @default.
- W3127272704 cites W1979624320 @default.
- W3127272704 cites W1982075703 @default.
- W3127272704 cites W2004688290 @default.
- W3127272704 cites W2015498608 @default.
- W3127272704 cites W2021043482 @default.
- W3127272704 cites W2022764132 @default.
- W3127272704 cites W2034407513 @default.
- W3127272704 cites W2035210281 @default.
- W3127272704 cites W2041491450 @default.
- W3127272704 cites W2044426030 @default.
- W3127272704 cites W2047368442 @default.
- W3127272704 cites W2063070426 @default.
- W3127272704 cites W2073676472 @default.
- W3127272704 cites W2089518993 @default.
- W3127272704 cites W2146017832 @default.
- W3127272704 cites W2161791586 @default.
- W3127272704 cites W2193814768 @default.
- W3127272704 cites W2300117188 @default.
- W3127272704 cites W2396828435 @default.
- W3127272704 cites W2523322675 @default.
- W3127272704 cites W2523338642 @default.
- W3127272704 cites W2560996920 @default.
- W3127272704 cites W2584566642 @default.
- W3127272704 cites W2702582144 @default.
- W3127272704 cites W2766653193 @default.
- W3127272704 cites W2790476833 @default.
- W3127272704 cites W2790779651 @default.
- W3127272704 cites W2798197447 @default.
- W3127272704 cites W2883817588 @default.
- W3127272704 cites W2888572137 @default.
- W3127272704 cites W2889283060 @default.
- W3127272704 cites W2900576615 @default.
- W3127272704 cites W2902767511 @default.
- W3127272704 cites W2921938290 @default.
- W3127272704 cites W2936556088 @default.
- W3127272704 cites W2947959051 @default.
- W3127272704 cites W2950969601 @default.
- W3127272704 cites W3004609723 @default.
- W3127272704 cites W997265401 @default.
- W3127272704 doi "https://doi.org/10.1016/j.talo.2020.100030" @default.
- W3127272704 hasPublicationYear "2021" @default.
- W3127272704 type Work @default.
- W3127272704 sameAs 3127272704 @default.
- W3127272704 citedByCount "0" @default.
- W3127272704 crossrefType "journal-article" @default.
- W3127272704 hasAuthorship W3127272704A5013158456 @default.
- W3127272704 hasAuthorship W3127272704A5046135731 @default.
- W3127272704 hasAuthorship W3127272704A5048144587 @default.
- W3127272704 hasAuthorship W3127272704A5053032280 @default.
- W3127272704 hasAuthorship W3127272704A5081573302 @default.
- W3127272704 hasAuthorship W3127272704A5083967189 @default.
- W3127272704 hasBestOaLocation W31272727041 @default.
- W3127272704 hasConcept C119128265 @default.
- W3127272704 hasConcept C127413603 @default.
- W3127272704 hasConcept C150394285 @default.
- W3127272704 hasConcept C155672457 @default.
- W3127272704 hasConcept C159985019 @default.
- W3127272704 hasConcept C162356407 @default.
- W3127272704 hasConcept C171250308 @default.
- W3127272704 hasConcept C178790620 @default.
- W3127272704 hasConcept C185592680 @default.
- W3127272704 hasConcept C191897082 @default.
- W3127272704 hasConcept C192562407 @default.
- W3127272704 hasConcept C205345274 @default.
- W3127272704 hasConcept C2778533135 @default.
- W3127272704 hasConcept C2781448156 @default.
- W3127272704 hasConcept C42360764 @default.
- W3127272704 hasConcept C43617362 @default.
- W3127272704 hasConcept C4725764 @default.
- W3127272704 hasConcept C506065880 @default.
- W3127272704 hasConcept C519885992 @default.
- W3127272704 hasConceptScore W3127272704C119128265 @default.
- W3127272704 hasConceptScore W3127272704C127413603 @default.
- W3127272704 hasConceptScore W3127272704C150394285 @default.
- W3127272704 hasConceptScore W3127272704C155672457 @default.
- W3127272704 hasConceptScore W3127272704C159985019 @default.
- W3127272704 hasConceptScore W3127272704C162356407 @default.
- W3127272704 hasConceptScore W3127272704C171250308 @default.
- W3127272704 hasConceptScore W3127272704C178790620 @default.
- W3127272704 hasConceptScore W3127272704C185592680 @default.
- W3127272704 hasConceptScore W3127272704C191897082 @default.
- W3127272704 hasConceptScore W3127272704C192562407 @default.
- W3127272704 hasConceptScore W3127272704C205345274 @default.
- W3127272704 hasConceptScore W3127272704C2778533135 @default.
- W3127272704 hasConceptScore W3127272704C2781448156 @default.
- W3127272704 hasConceptScore W3127272704C42360764 @default.