The Journal of Chemical Physics · 2020 · 27 citations · 22 references
Nanocrystalline MaterialTriplet Energy TransferEngineeringPhysicsNanomaterialsNanotechnologyNatural SciencesApplied PhysicsPhoton UpconversionColloidal NanocrystalsUpconversion LuminescenceExcitation Energy TransferTriplet-triplet AnnihilationChemistryCdse NanocrystalsPhotophysical PropertySemiconductor Nanostructures
In triplet-triplet annihilation based photon upconversion, controlling triplet energy transfer (TET) through the system is key to unlocking higher efficiencies. In this work, we vary the size of colloidally synthesized CdSe nanocrystals (NCs) to examine the effects on TET during photon upconversion, using steady-state measurements and transient absorption spectroscopy. As the CdSe NC size increases, the photon upconversion quantum yield (QY) decreases due to the decrease in the rate of TET from CdSe to the surface bound anthracene transmitter ligand, as expected for the Marcus description of energy transfer from the transmitter to the NC. Long microsecond transmitter lifetimes are critical to high photon upconversion QYs.
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Observation of the "Dark Exciton" in CdSe Quantum Dots
M. Nirmal, David J. Norris, Masaru Kuno et al. · Physical Review Letters · 1995 · 827 citations
Direct observation of triplet energy transfer from semiconductor nanocrystals
Cédric Mongin, Sofia Garakyaraghi, Natalia Razgoniaeva et al. · Science · 2016 · 442 citations · Full text