Matches in SemOpenAlex for { <https://semopenalex.org/work/W2896535603> ?p ?o ?g. }
- W2896535603 endingPage "16295" @default.
- W2896535603 startingPage "16291" @default.
- W2896535603 abstract "Abstract The synergy of panchromatic absorption throughout most of the visible range of the solar spectrum and intramolecular singlet fission (SF) has been realized in a series of conjugates featuring different light‐harvesting subphthalocyanines (SubPcs) and an energy accepting pentacene dimer (Pnc 2 ). At the focal point was a modular SubPc approach, which was based on decorating the SubPc core with different peripheral substituents to tailor and fine‐tune their optical properties. Transient absorption measurements assisted in corroborating that the SubPcs act as energy‐transfer antennas by means of unidirectional and quantitative intramolecular Förster resonance energy transfer (FRET) to the Pnc 2 , where an intramolecular SF affords triplet quantum yields reaching unity." @default.
- W2896535603 created "2018-10-26" @default.
- W2896535603 creator A5003353065 @default.
- W2896535603 creator A5006733730 @default.
- W2896535603 creator A5017280240 @default.
- W2896535603 creator A5029685109 @default.
- W2896535603 creator A5032575922 @default.
- W2896535603 creator A5049602108 @default.
- W2896535603 creator A5065465353 @default.
- W2896535603 date "2018-10-19" @default.
- W2896535603 modified "2023-10-16" @default.
- W2896535603 title "Tuning Intramolecular Förster Resonance Energy Transfer and Activating Intramolecular Singlet Fission" @default.
- W2896535603 cites W1969949225 @default.
- W2896535603 cites W1975732099 @default.
- W2896535603 cites W1984100061 @default.
- W2896535603 cites W2001563393 @default.
- W2896535603 cites W2003585641 @default.
- W2896535603 cites W2006780963 @default.
- W2896535603 cites W2011502491 @default.
- W2896535603 cites W2021884442 @default.
- W2896535603 cites W2035415725 @default.
- W2896535603 cites W2036722200 @default.
- W2896535603 cites W2042641283 @default.
- W2896535603 cites W2055259663 @default.
- W2896535603 cites W2058242045 @default.
- W2896535603 cites W2069318019 @default.
- W2896535603 cites W2080745068 @default.
- W2896535603 cites W2102499689 @default.
- W2896535603 cites W2109380714 @default.
- W2896535603 cites W2116040604 @default.
- W2896535603 cites W2121913617 @default.
- W2896535603 cites W2124685784 @default.
- W2896535603 cites W2138659763 @default.
- W2896535603 cites W2143995928 @default.
- W2896535603 cites W2146195532 @default.
- W2896535603 cites W2155751707 @default.
- W2896535603 cites W2162342223 @default.
- W2896535603 cites W2166701628 @default.
- W2896535603 cites W2279515881 @default.
- W2896535603 cites W2290223788 @default.
- W2896535603 cites W2315490569 @default.
- W2896535603 cites W2315807761 @default.
- W2896535603 cites W2327595659 @default.
- W2896535603 cites W2328106699 @default.
- W2896535603 cites W2339250267 @default.
- W2896535603 cites W2346970089 @default.
- W2896535603 cites W2409112513 @default.
- W2896535603 cites W2409626713 @default.
- W2896535603 cites W2513756861 @default.
- W2896535603 cites W2536141826 @default.
- W2896535603 cites W2558761515 @default.
- W2896535603 cites W2560498444 @default.
- W2896535603 cites W2562431189 @default.
- W2896535603 cites W2601990936 @default.
- W2896535603 cites W2615922941 @default.
- W2896535603 cites W268891886 @default.
- W2896535603 cites W2743340484 @default.
- W2896535603 cites W2756328919 @default.
- W2896535603 cites W2757431502 @default.
- W2896535603 cites W2783689410 @default.
- W2896535603 cites W2800461054 @default.
- W2896535603 cites W2806757759 @default.
- W2896535603 cites W2863325918 @default.
- W2896535603 cites W3098880726 @default.
- W2896535603 cites W3104042235 @default.
- W2896535603 cites W4211056516 @default.
- W2896535603 cites W4240456686 @default.
- W2896535603 cites W4254543002 @default.
- W2896535603 doi "https://doi.org/10.1002/anie.201808652" @default.
- W2896535603 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30230158" @default.
- W2896535603 hasPublicationYear "2018" @default.
- W2896535603 type Work @default.
- W2896535603 sameAs 2896535603 @default.
- W2896535603 citedByCount "18" @default.
- W2896535603 countsByYear W28965356032019 @default.
- W2896535603 countsByYear W28965356032020 @default.
- W2896535603 countsByYear W28965356032021 @default.
- W2896535603 countsByYear W28965356032022 @default.
- W2896535603 countsByYear W28965356032023 @default.
- W2896535603 crossrefType "journal-article" @default.
- W2896535603 hasAuthorship W2896535603A5003353065 @default.
- W2896535603 hasAuthorship W2896535603A5006733730 @default.
- W2896535603 hasAuthorship W2896535603A5017280240 @default.
- W2896535603 hasAuthorship W2896535603A5029685109 @default.
- W2896535603 hasAuthorship W2896535603A5032575922 @default.
- W2896535603 hasAuthorship W2896535603A5049602108 @default.
- W2896535603 hasAuthorship W2896535603A5065465353 @default.
- W2896535603 hasConcept C120665830 @default.
- W2896535603 hasConcept C121332964 @default.
- W2896535603 hasConcept C139210041 @default.
- W2896535603 hasConcept C161522054 @default.
- W2896535603 hasConcept C178790620 @default.
- W2896535603 hasConcept C181500209 @default.
- W2896535603 hasConcept C184779094 @default.
- W2896535603 hasConcept C185592680 @default.
- W2896535603 hasConcept C32891209 @default.
- W2896535603 hasConcept C32909587 @default.
- W2896535603 hasConcept C33062035 @default.