Exchange controlled triplet fusion in metal–organic frameworks

Author:

Ha Dong-Gwang,Wan Ruomeng,Kim Changhae AndrewORCID,Lin Ting-An,Yang Luming,Van Voorhis TroyORCID,Baldo Marc A.ORCID,Dincă MirceaORCID

Abstract

AbstractTriplet-fusion-based photon upconversion holds promise for a wide range of applications, from photovoltaics to bioimaging. The efficiency of triplet fusion, however, is fundamentally limited in conventional molecular and polymeric systems by its spin dependence. Here, we show that the inherent tailorability of metal–organic frameworks (MOFs), combined with their highly porous but ordered structure, minimizes intertriplet exchange coupling and engineers effective spin mixing between singlet and quintet triplet–triplet pair states. We demonstrate singlet–quintet coupling in a pyrene-based MOF, NU-1000. An anomalous magnetic field effect is observed from NU-1000 corresponding to an induced resonance between singlet and quintet states that yields an increased fusion rate at room temperature under a relatively low applied magnetic field of 0.14 T. Our results suggest that MOFs offer particular promise for engineering the spin dynamics of multiexcitonic processes and improving their upconversion performance.

Funder

NSF | Directorate for Mathematical & Physical Sciences | Division of Materials Research

DOE | SC | Basic Energy Sciences

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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