Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220783729> ?p ?o ?g. }
- W4220783729 endingPage "3104" @default.
- W4220783729 startingPage "3096" @default.
- W4220783729 abstract "Lanthanide luminescence has been treated separate from molecular photophysics, although the underlying phenomena are the same. As the optical transitions observed in the trivalent lanthanide ions are forbidden, they do belong to the group that molecular photophysics has yet to conquer, yet the experimental descriptors remain valid. Herein, the luminescence quantum yields (ϕlum), luminescence lifetimes (τobs), oscillator strengths (f), and the rates of nonradiative (knr) and radiative (kr ≡ A) deactivation of [Eu(H2O)9]3+ were determined. Further, it was shown that instead of a full photophysical characterization, it is possible to relate changes in transition probabilities to the relative parameter Arel, which does not require reference data. While Arel does not afford comparisons between experiments, it resolves emission intensity changes due to emitter properties from intensity changes due to environmental effects and differences in the number of photons absorbed. When working with fluorescence this may seem trivial; when working with lanthanide luminescence it is not." @default.
- W4220783729 created "2022-04-03" @default.
- W4220783729 creator A5019987216 @default.
- W4220783729 creator A5056546144 @default.
- W4220783729 creator A5074462988 @default.
- W4220783729 date "2022-03-31" @default.
- W4220783729 modified "2023-10-16" @default.
- W4220783729 title "<i><b>A</b></i><sub>rel</sub>: Investigating [Eu(H<sub>2</sub>O)<sub>9</sub>]<sup>3+</sup> Photophysics and Creating a Method to Bypass Luminescence Quantum Yield Determinations" @default.
- W4220783729 cites W1551656287 @default.
- W4220783729 cites W1965960192 @default.
- W4220783729 cites W1969137131 @default.
- W4220783729 cites W1970038938 @default.
- W4220783729 cites W1987741147 @default.
- W4220783729 cites W1997815173 @default.
- W4220783729 cites W2005147299 @default.
- W4220783729 cites W2012492137 @default.
- W4220783729 cites W2018159077 @default.
- W4220783729 cites W2025900645 @default.
- W4220783729 cites W2032289398 @default.
- W4220783729 cites W2037849042 @default.
- W4220783729 cites W2041966583 @default.
- W4220783729 cites W2044739704 @default.
- W4220783729 cites W2047330854 @default.
- W4220783729 cites W2058783588 @default.
- W4220783729 cites W2059135111 @default.
- W4220783729 cites W2059479364 @default.
- W4220783729 cites W2065377009 @default.
- W4220783729 cites W2073575395 @default.
- W4220783729 cites W2079488111 @default.
- W4220783729 cites W2099021383 @default.
- W4220783729 cites W2101012583 @default.
- W4220783729 cites W2113844012 @default.
- W4220783729 cites W2125314782 @default.
- W4220783729 cites W2144391591 @default.
- W4220783729 cites W2151859760 @default.
- W4220783729 cites W2308289287 @default.
- W4220783729 cites W2319488456 @default.
- W4220783729 cites W2320981949 @default.
- W4220783729 cites W2321735870 @default.
- W4220783729 cites W2326411711 @default.
- W4220783729 cites W2330374780 @default.
- W4220783729 cites W2336866399 @default.
- W4220783729 cites W2556186610 @default.
- W4220783729 cites W2604603594 @default.
- W4220783729 cites W2611139689 @default.
- W4220783729 cites W2766158067 @default.
- W4220783729 cites W2897410759 @default.
- W4220783729 cites W2914766254 @default.
- W4220783729 cites W2986910306 @default.
- W4220783729 cites W2992730007 @default.
- W4220783729 cites W2999696493 @default.
- W4220783729 cites W3007547017 @default.
- W4220783729 cites W3015221821 @default.
- W4220783729 cites W3024454485 @default.
- W4220783729 cites W3040923931 @default.
- W4220783729 cites W3042932527 @default.
- W4220783729 cites W3135007450 @default.
- W4220783729 cites W3135835240 @default.
- W4220783729 cites W3166561696 @default.
- W4220783729 cites W3168842154 @default.
- W4220783729 cites W3183917379 @default.
- W4220783729 cites W3206043116 @default.
- W4220783729 cites W3213803717 @default.
- W4220783729 cites W4246255476 @default.
- W4220783729 cites W747622332 @default.
- W4220783729 cites W751541144 @default.
- W4220783729 doi "https://doi.org/10.1021/acs.jpclett.2c00418" @default.
- W4220783729 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35357175" @default.
- W4220783729 hasPublicationYear "2022" @default.
- W4220783729 type Work @default.
- W4220783729 citedByCount "12" @default.
- W4220783729 countsByYear W42207837292022 @default.
- W4220783729 countsByYear W42207837292023 @default.
- W4220783729 crossrefType "journal-article" @default.
- W4220783729 hasAuthorship W4220783729A5019987216 @default.
- W4220783729 hasAuthorship W4220783729A5056546144 @default.
- W4220783729 hasAuthorship W4220783729A5074462988 @default.
- W4220783729 hasConcept C113196181 @default.
- W4220783729 hasConcept C120665830 @default.
- W4220783729 hasConcept C121332964 @default.
- W4220783729 hasConcept C145148216 @default.
- W4220783729 hasConcept C148869448 @default.
- W4220783729 hasConcept C159317903 @default.
- W4220783729 hasConcept C171001562 @default.
- W4220783729 hasConcept C178790620 @default.
- W4220783729 hasConcept C184779094 @default.
- W4220783729 hasConcept C185592680 @default.
- W4220783729 hasConcept C192562407 @default.
- W4220783729 hasConcept C201770740 @default.
- W4220783729 hasConcept C205507967 @default.
- W4220783729 hasConcept C43617362 @default.
- W4220783729 hasConcept C49040817 @default.
- W4220783729 hasConcept C74902906 @default.
- W4220783729 hasConcept C75473681 @default.
- W4220783729 hasConcept C91881484 @default.
- W4220783729 hasConceptScore W4220783729C113196181 @default.
- W4220783729 hasConceptScore W4220783729C120665830 @default.
- W4220783729 hasConceptScore W4220783729C121332964 @default.