Publication | Closed Access
Topology-dependent emissive properties of zirconium-based porphyrin MOFs
85
Citations
22
References
2016
Year
Organic Charge-transfer CompoundEngineeringTopological ControlPhotochemistryNanoporous MaterialOxide ElectronicsApplied PhysicsSolid-state ChemistryPhysical ChemistryPhotophysical PropertyZirconium-based Porphyrin MofsThermally Activated Delayed FluorescenceChemistryMetal-organic FrameworksPhotochromismBiophysicsChromophoric Linkers
Highly ordered chromophoric linkers positioned within the metal-organic frameworks (MOFs) have the potential to mimic natural light-harvesting complexes. Herein we report topological control over the photophysical properties of MOFs via modular interchromophoric electronic coupling to manifest different steady-state singlet emission spectra and their corresponding fluorescence lifetimes.
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