2017
DOI: 10.1002/zaac.201700396
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A Series of New Eu/Tb Mixed MOFs with Tunable Color Luminescence

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Cited by 8 publications
(2 citation statements)
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“…The Tb-MOF lifetime was shown to have a monoexponential decay longer than that in the Eu-MOF (1057 µs vs. 600 ± 1 µs). On the other hand, both Eu and Tb-MOFs have predominantly exhibited longer lifetimes than the recently reported values 14 , 41 , 42 without modifying the structure with external fluorophores.
Figure 4 Time-resolved emission decays of Eu-MOF (λ ex = 396 nm) and Tb-MOF (λ ex = 285 nm) with their corresponding lifetime values.
…”
Section: Resultscontrasting
confidence: 67%
“…The Tb-MOF lifetime was shown to have a monoexponential decay longer than that in the Eu-MOF (1057 µs vs. 600 ± 1 µs). On the other hand, both Eu and Tb-MOFs have predominantly exhibited longer lifetimes than the recently reported values 14 , 41 , 42 without modifying the structure with external fluorophores.
Figure 4 Time-resolved emission decays of Eu-MOF (λ ex = 396 nm) and Tb-MOF (λ ex = 285 nm) with their corresponding lifetime values.
…”
Section: Resultscontrasting
confidence: 67%
“…Among these linkers, lanthanide ions are normally excellent candidates for POM-based inorganic-organic hybrids (Li et al, 2017;. Due to their higher coordination number, more flexible coordination geometry and stronger oxophile ability, they have been prone to constructing high-dimensional architectures in the reported POM-based lanthanide complexes (Luo et al, 2018;Gao et al, 2010). Nevertheless, compared to these extended structures, the preparation of low-dimensional (especially discrete structure) hybrid materials is relatively difficult (Zhang et al, 2008).…”
Section: Introductionmentioning
confidence: 99%