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Both complexes emit strong blue phosphorescence with high quantum yields.
Two systems with Zn2+ ions showed white emission with high quantum yields of fluorescence.
The polymers emitted blue green fluorescence with high quantum yields up to 67% in CHCl3.
These all information is highly important for researcher looking to achieve pyrochlore based phosphor materials with high quantum yield.
The S, N co-doped C-dots with high quantum yield of 73.1% were prepared by hydrothermal method.
Such weakly fluorescent anthracene azides demonstrate high reactivity with a variety of alkynes under the CuAAC conditions producing a strongly fluorescent triazole product with high quantum yields.
Of these, we find that the most promising devices available are photomultiplier tubes with high (∼50%) quantum efficiency, although hybrid photodetectors with high quantum efficiency would be preferable.
The two lanthanide complexes showed characteristic emissions of Eu3+ and Tb3+ ions with high quantum yields of 11±1.1% and 13±1.5% respectively.
The Ir III) complexes emitted intense phosphorescence with yellow or orange color at room temperature with high quantum efficiencies and relatively short lifetimes.
Consequently, Ir3 exhibits 'pure' blue phosphorescence with high quantum yield (95%) and short triplet lifetimes, the latter being beneficial for high radiative decay rates.
The PN-CDs with P/C atomic ratio of ca. 9.2/100 emit blue luminescence with high quantum yields of up to 23.5%.
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