Matches in SemOpenAlex for { <https://semopenalex.org/work/W2891273792> ?p ?o ?g. }
- W2891273792 endingPage "130" @default.
- W2891273792 startingPage "124" @default.
- W2891273792 abstract "Quantum dots (QDs), drawing large attention during the past three decades, have been extensively applied in lighting, display, and biodetection. However, the mechanism for their ability in biodetection, especially in recognizing toxic metal ions, has scarcely been explored. In this work, three sets of CuInS2@ZnS QDs systems with inert shell thickness varying from 1.1 to 4.1 nm have been performed. As the shrinkage of inert shell, QDs not only show red-shift emission but also demonstrate more sensitive and higher response to the added Cd2+. The thin-shell CuInS2@ZnS QDs could detect 0.91 nM Cd2+, and could further detect 4.36 nM Cd2+ when integrated with paper-based platform. Importantly, thin-shell CuInS2@ZnS QDs combined with paper-based platform can detect 105.86 nM Cd2+ even just applying mobile phone as detector and hand-held UV lamp as excitation resource. The mechanism is further proposed based on the energy transfer routes. The thin inert shell can not completely protect the emissive core away from the surface defects, but it can neither exclude the energy transfer from the surface to the emissive core. The added Cd2+ would facilitate the formation of CdS on the surface of QDs, which not only can alleviate the surface defects but also can transfer energy to emissive CuInS2, thus thinning the thickness of inert shell greatly boost the detection sensitivity." @default.
- W2891273792 created "2018-09-27" @default.
- W2891273792 creator A5010142517 @default.
- W2891273792 creator A5014632236 @default.
- W2891273792 creator A5019404159 @default.
- W2891273792 creator A5023903360 @default.
- W2891273792 creator A5028059842 @default.
- W2891273792 creator A5049333050 @default.
- W2891273792 creator A5054897607 @default.
- W2891273792 creator A5058965019 @default.
- W2891273792 date "2019-01-01" @default.
- W2891273792 modified "2023-10-16" @default.
- W2891273792 title "Thinning shell thickness of CuInS2@ZnS quantum dots to boost detection sensitivity" @default.
- W2891273792 cites W1964398725 @default.
- W2891273792 cites W1972531827 @default.
- W2891273792 cites W1982848381 @default.
- W2891273792 cites W1988196812 @default.
- W2891273792 cites W2007456527 @default.
- W2891273792 cites W2010659423 @default.
- W2891273792 cites W2023754189 @default.
- W2891273792 cites W2030936891 @default.
- W2891273792 cites W2039501915 @default.
- W2891273792 cites W2040265643 @default.
- W2891273792 cites W2043929714 @default.
- W2891273792 cites W2064125266 @default.
- W2891273792 cites W2073466725 @default.
- W2891273792 cites W2074148430 @default.
- W2891273792 cites W2077084350 @default.
- W2891273792 cites W2083806235 @default.
- W2891273792 cites W2091380529 @default.
- W2891273792 cites W2103939835 @default.
- W2891273792 cites W2121139533 @default.
- W2891273792 cites W2130191814 @default.
- W2891273792 cites W2139765356 @default.
- W2891273792 cites W2147704367 @default.
- W2891273792 cites W2155016065 @default.
- W2891273792 cites W2164987951 @default.
- W2891273792 cites W2265112743 @default.
- W2891273792 cites W2271285705 @default.
- W2891273792 cites W2314458348 @default.
- W2891273792 cites W2315142504 @default.
- W2891273792 cites W2316646022 @default.
- W2891273792 cites W2318093048 @default.
- W2891273792 cites W2320177871 @default.
- W2891273792 cites W2322098576 @default.
- W2891273792 cites W2324644230 @default.
- W2891273792 cites W2337364160 @default.
- W2891273792 cites W2465597905 @default.
- W2891273792 cites W2473477171 @default.
- W2891273792 cites W2570611418 @default.
- W2891273792 cites W2739687650 @default.
- W2891273792 cites W2766414734 @default.
- W2891273792 doi "https://doi.org/10.1016/j.aca.2018.09.043" @default.
- W2891273792 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30567642" @default.
- W2891273792 hasPublicationYear "2019" @default.
- W2891273792 type Work @default.
- W2891273792 sameAs 2891273792 @default.
- W2891273792 citedByCount "11" @default.
- W2891273792 countsByYear W28912737922019 @default.
- W2891273792 countsByYear W28912737922020 @default.
- W2891273792 countsByYear W28912737922021 @default.
- W2891273792 countsByYear W28912737922022 @default.
- W2891273792 countsByYear W28912737922023 @default.
- W2891273792 crossrefType "journal-article" @default.
- W2891273792 hasAuthorship W2891273792A5010142517 @default.
- W2891273792 hasAuthorship W2891273792A5014632236 @default.
- W2891273792 hasAuthorship W2891273792A5019404159 @default.
- W2891273792 hasAuthorship W2891273792A5023903360 @default.
- W2891273792 hasAuthorship W2891273792A5028059842 @default.
- W2891273792 hasAuthorship W2891273792A5049333050 @default.
- W2891273792 hasAuthorship W2891273792A5054897607 @default.
- W2891273792 hasAuthorship W2891273792A5058965019 @default.
- W2891273792 hasConcept C124657808 @default.
- W2891273792 hasConcept C154256306 @default.
- W2891273792 hasConcept C159985019 @default.
- W2891273792 hasConcept C171250308 @default.
- W2891273792 hasConcept C178790620 @default.
- W2891273792 hasConcept C185592680 @default.
- W2891273792 hasConcept C192562407 @default.
- W2891273792 hasConcept C2781052500 @default.
- W2891273792 hasConcept C49040817 @default.
- W2891273792 hasConceptScore W2891273792C124657808 @default.
- W2891273792 hasConceptScore W2891273792C154256306 @default.
- W2891273792 hasConceptScore W2891273792C159985019 @default.
- W2891273792 hasConceptScore W2891273792C171250308 @default.
- W2891273792 hasConceptScore W2891273792C178790620 @default.
- W2891273792 hasConceptScore W2891273792C185592680 @default.
- W2891273792 hasConceptScore W2891273792C192562407 @default.
- W2891273792 hasConceptScore W2891273792C2781052500 @default.
- W2891273792 hasConceptScore W2891273792C49040817 @default.
- W2891273792 hasFunder F4320321001 @default.
- W2891273792 hasFunder F4320322769 @default.
- W2891273792 hasLocation W28912737921 @default.
- W2891273792 hasLocation W28912737922 @default.
- W2891273792 hasOpenAccess W2891273792 @default.
- W2891273792 hasPrimaryLocation W28912737921 @default.
- W2891273792 hasRelatedWork W1977391551 @default.
- W2891273792 hasRelatedWork W2010224216 @default.