Matches in SemOpenAlex for { <https://semopenalex.org/work/W4383500151> ?p ?o ?g. }
- W4383500151 endingPage "5549" @default.
- W4383500151 startingPage "5541" @default.
- W4383500151 abstract "Achieving highly transparent and emissive films based on perovskite quantum dots (PQDs) is a challenging task since their photoluminescence quantum yield (PLQY) typically drops abruptly when they are used as building blocks to make a solid. In this work, we obtain highly transparent films containing FAPbBr3 quantum dots that display a narrow green emission (λ = 530 nm, full width at half-maximum (FWHM) = 23 nm) with a PLQY as high as 86%. The method employed makes use of porous matrices that act as arrays of nanoreactors to synthesize the targeted quantum dots within their void space, providing both a means to keep them dispersed and a protective environment. Further infiltration with poly(methyl methacrylate) (PMMA) increases the mechanical and chemical stability of the ensemble and serves to passivate surface defects, boosting the emission of the embedded PQD and significantly reducing the width of the emission peak, which fulfills the requirements established by the Commission Internationale de l'Éclairage (CIE) to be considered an ultrapure green emitter. The versatility of this approach is demonstrated by fabricating a color-converting layer that can be easily transferred onto a light-emitting device surface to modify the spectral properties of the outgoing radiation." @default.
- W4383500151 created "2023-07-08" @default.
- W4383500151 creator A5020653647 @default.
- W4383500151 creator A5029583949 @default.
- W4383500151 creator A5031113462 @default.
- W4383500151 creator A5050728309 @default.
- W4383500151 creator A5075429881 @default.
- W4383500151 date "2023-07-07" @default.
- W4383500151 modified "2023-10-18" @default.
- W4383500151 title "Ultrapure Green High Photoluminescence Quantum Yield from FAPbBr<sub>3</sub> Nanocrystals Embedded in Transparent Porous Films" @default.
- W4383500151 cites W1963721320 @default.
- W4383500151 cites W1964203864 @default.
- W4383500151 cites W1970902810 @default.
- W4383500151 cites W2009500395 @default.
- W4383500151 cites W2011417067 @default.
- W4383500151 cites W2020043850 @default.
- W4383500151 cites W2023833303 @default.
- W4383500151 cites W2037366627 @default.
- W4383500151 cites W2038779218 @default.
- W4383500151 cites W2086616066 @default.
- W4383500151 cites W2087002485 @default.
- W4383500151 cites W2120185412 @default.
- W4383500151 cites W2128236623 @default.
- W4383500151 cites W2169875504 @default.
- W4383500151 cites W2210960440 @default.
- W4383500151 cites W2335095889 @default.
- W4383500151 cites W2338435468 @default.
- W4383500151 cites W2509317409 @default.
- W4383500151 cites W2510601879 @default.
- W4383500151 cites W2519553464 @default.
- W4383500151 cites W2522833408 @default.
- W4383500151 cites W2523134646 @default.
- W4383500151 cites W2527913842 @default.
- W4383500151 cites W2531258636 @default.
- W4383500151 cites W2538338482 @default.
- W4383500151 cites W2551663826 @default.
- W4383500151 cites W2744077643 @default.
- W4383500151 cites W2744182579 @default.
- W4383500151 cites W2757507462 @default.
- W4383500151 cites W2780504473 @default.
- W4383500151 cites W2789756899 @default.
- W4383500151 cites W2794107391 @default.
- W4383500151 cites W2808513658 @default.
- W4383500151 cites W2809579105 @default.
- W4383500151 cites W2887473708 @default.
- W4383500151 cites W2887595704 @default.
- W4383500151 cites W2888514313 @default.
- W4383500151 cites W2889111472 @default.
- W4383500151 cites W2891641435 @default.
- W4383500151 cites W2893626860 @default.
- W4383500151 cites W2895126220 @default.
- W4383500151 cites W2901064384 @default.
- W4383500151 cites W2910966442 @default.
- W4383500151 cites W2913207509 @default.
- W4383500151 cites W2944370267 @default.
- W4383500151 cites W2971083991 @default.
- W4383500151 cites W2971636874 @default.
- W4383500151 cites W2976204907 @default.
- W4383500151 cites W2998584459 @default.
- W4383500151 cites W2999607681 @default.
- W4383500151 cites W3000666977 @default.
- W4383500151 cites W3005652972 @default.
- W4383500151 cites W3008785232 @default.
- W4383500151 cites W3009332676 @default.
- W4383500151 cites W3015337075 @default.
- W4383500151 cites W3099914055 @default.
- W4383500151 cites W3106302036 @default.
- W4383500151 cites W3115039331 @default.
- W4383500151 cites W3117740921 @default.
- W4383500151 cites W3153468516 @default.
- W4383500151 cites W3154998379 @default.
- W4383500151 cites W3173560569 @default.
- W4383500151 cites W3174041055 @default.
- W4383500151 cites W3175144836 @default.
- W4383500151 cites W4205489557 @default.
- W4383500151 cites W4210513555 @default.
- W4383500151 cites W4237544360 @default.
- W4383500151 cites W4286561082 @default.
- W4383500151 cites W4310336377 @default.
- W4383500151 cites W4311927061 @default.
- W4383500151 doi "https://doi.org/10.1021/acs.chemmater.3c00934" @default.
- W4383500151 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37528839" @default.
- W4383500151 hasPublicationYear "2023" @default.
- W4383500151 type Work @default.
- W4383500151 citedByCount "0" @default.
- W4383500151 crossrefType "journal-article" @default.
- W4383500151 hasAuthorship W4383500151A5020653647 @default.
- W4383500151 hasAuthorship W4383500151A5029583949 @default.
- W4383500151 hasAuthorship W4383500151A5031113462 @default.
- W4383500151 hasAuthorship W4383500151A5050728309 @default.
- W4383500151 hasAuthorship W4383500151A5075429881 @default.
- W4383500151 hasBestOaLocation W43835001511 @default.
- W4383500151 hasConcept C108649604 @default.
- W4383500151 hasConcept C120665830 @default.
- W4383500151 hasConcept C121332964 @default.
- W4383500151 hasConcept C124657808 @default.
- W4383500151 hasConcept C171001562 @default.
- W4383500151 hasConcept C171250308 @default.