Publication | Open Access
Temperature‐Responsive Luminescent Solar Concentrators: Tuning Energy Transfer in a Liquid Crystalline Matrix
18
Citations
27
References
2017
Year
EngineeringEnergy ConversionOrganic Solar CellLuminescent GlassChemistryPhotovoltaicsSolar Thermal EnergyLiquid Crystalline MatrixSolar Energy UtilisationTuning Energy TransferMaterials ScienceLiquid Crystal SolventUnusual Temperature ControlPhotonic MaterialsUnused Solar EnergyOptical SensorsApplied PhysicsSolar CellsSolar Cell Materials
Abstract Temperature‐responsive luminescent solar concentrators (LSCs) have been fabricated in which the Förster resonance energy transfer (FRET) between a donor–acceptor pair in a liquid crystalline solvent can be tuned. At room temperatures, the perylene bisimide (PBI) acceptor is aggregated and FRET is inactive; while after heating to a temperature above the isotropic phase of the liquid crystal solvent, the acceptor PBI completely dissolves and FRET is activated. This unusual temperature control over FRET was used to design a color‐tunable LSC. The device has been shown to be highly stable towards consecutive heating and cooling cycles, making it an appealing device for harvesting otherwise unused solar energy.
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