Matches in SemOpenAlex for { <https://semopenalex.org/work/W2332187130> ?p ?o ?g. }
- W2332187130 endingPage "4187" @default.
- W2332187130 startingPage "4183" @default.
- W2332187130 abstract "In this work, direct exciton–plasmon interactions (EPI) between CdS quantum dots (QDs) and Ag nanoparticles (NPs) were invoked ingeniously by catalytic Ag deposition on Au NPs for the stimulation of high efficient damping effect toward the excitonic responses in CdS QDs, on the basis of which a novel photoelectrochemical (PEC) bioanalytical format was achieved for sensitive microRNA detection. Specifically, upon the configurational change from the hairpin probe DNA to the “Y”-shaped ternary conjugate consisting of the original probe DNA, assistant DNA, and the target microRNA, the alkaline phosphatase (ALP) catalytic chemistry would then trigger the transition of the interparticle interplay from the CdS QDs-Au NPs to the CdS QDs-Ag NPs systems for the microRNA detection due to the dependence of the photocurrent quenching on the target concentration. This work not only provided a unique method for EPI generation among the PEC nanosystems but also offered a versatile and general protocol for future PEC bioanalysis development." @default.
- W2332187130 created "2016-06-24" @default.
- W2332187130 creator A5000078761 @default.
- W2332187130 creator A5010404267 @default.
- W2332187130 creator A5022848808 @default.
- W2332187130 creator A5050812850 @default.
- W2332187130 creator A5078530516 @default.
- W2332187130 creator A5090698776 @default.
- W2332187130 date "2016-03-31" @default.
- W2332187130 modified "2023-10-18" @default.
- W2332187130 title "Invoking Direct Exciton–Plasmon Interactions by Catalytic Ag Deposition on Au Nanoparticles: Photoelectrochemical Bioanalysis with High Efficiency" @default.
- W2332187130 cites W1840938635 @default.
- W2332187130 cites W1973369831 @default.
- W2332187130 cites W1977940940 @default.
- W2332187130 cites W1990497688 @default.
- W2332187130 cites W1991455815 @default.
- W2332187130 cites W2010016674 @default.
- W2332187130 cites W2014211817 @default.
- W2332187130 cites W2023284888 @default.
- W2332187130 cites W2028242738 @default.
- W2332187130 cites W2031416514 @default.
- W2332187130 cites W2036714234 @default.
- W2332187130 cites W2043340670 @default.
- W2332187130 cites W2051925239 @default.
- W2332187130 cites W2085090499 @default.
- W2332187130 cites W2086418954 @default.
- W2332187130 cites W2090408954 @default.
- W2332187130 cites W2090495333 @default.
- W2332187130 cites W2096839636 @default.
- W2332187130 cites W2104354471 @default.
- W2332187130 cites W2104878379 @default.
- W2332187130 cites W2105477643 @default.
- W2332187130 cites W2107980772 @default.
- W2332187130 cites W2110589861 @default.
- W2332187130 cites W2111512547 @default.
- W2332187130 cites W2128324917 @default.
- W2332187130 cites W2141432301 @default.
- W2332187130 cites W2228327815 @default.
- W2332187130 cites W2236668338 @default.
- W2332187130 cites W2300259727 @default.
- W2332187130 cites W2315280794 @default.
- W2332187130 cites W2317304611 @default.
- W2332187130 cites W2317657271 @default.
- W2332187130 cites W2318921792 @default.
- W2332187130 cites W2319485784 @default.
- W2332187130 cites W2320658169 @default.
- W2332187130 cites W2320767809 @default.
- W2332187130 cites W2327158420 @default.
- W2332187130 cites W2329827896 @default.
- W2332187130 cites W2329993349 @default.
- W2332187130 cites W2333934320 @default.
- W2332187130 cites W2335065169 @default.
- W2332187130 cites W2411235578 @default.
- W2332187130 cites W2424347742 @default.
- W2332187130 cites W2426850258 @default.
- W2332187130 cites W2471117741 @default.
- W2332187130 doi "https://doi.org/10.1021/acs.analchem.6b00503" @default.
- W2332187130 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/27023112" @default.
- W2332187130 hasPublicationYear "2016" @default.
- W2332187130 type Work @default.
- W2332187130 sameAs 2332187130 @default.
- W2332187130 citedByCount "62" @default.
- W2332187130 countsByYear W23321871302016 @default.
- W2332187130 countsByYear W23321871302017 @default.
- W2332187130 countsByYear W23321871302018 @default.
- W2332187130 countsByYear W23321871302019 @default.
- W2332187130 countsByYear W23321871302020 @default.
- W2332187130 countsByYear W23321871302021 @default.
- W2332187130 countsByYear W23321871302022 @default.
- W2332187130 countsByYear W23321871302023 @default.
- W2332187130 crossrefType "journal-article" @default.
- W2332187130 hasAuthorship W2332187130A5000078761 @default.
- W2332187130 hasAuthorship W2332187130A5010404267 @default.
- W2332187130 hasAuthorship W2332187130A5022848808 @default.
- W2332187130 hasAuthorship W2332187130A5050812850 @default.
- W2332187130 hasAuthorship W2332187130A5078530516 @default.
- W2332187130 hasAuthorship W2332187130A5090698776 @default.
- W2332187130 hasBestOaLocation W23321871301 @default.
- W2332187130 hasConcept C110879396 @default.
- W2332187130 hasConcept C119128265 @default.
- W2332187130 hasConcept C121332964 @default.
- W2332187130 hasConcept C121745418 @default.
- W2332187130 hasConcept C124657808 @default.
- W2332187130 hasConcept C137535248 @default.
- W2332187130 hasConcept C15083742 @default.
- W2332187130 hasConcept C151730666 @default.
- W2332187130 hasConcept C155672457 @default.
- W2332187130 hasConcept C160756335 @default.
- W2332187130 hasConcept C161790260 @default.
- W2332187130 hasConcept C171250308 @default.
- W2332187130 hasConcept C17729963 @default.
- W2332187130 hasConcept C185592680 @default.
- W2332187130 hasConcept C192562407 @default.
- W2332187130 hasConcept C199360897 @default.
- W2332187130 hasConcept C2779845233 @default.
- W2332187130 hasConcept C2816523 @default.
- W2332187130 hasConcept C41008148 @default.
- W2332187130 hasConcept C43617362 @default.