Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Singlet fission, Exciton, Singlet state, Fission, and Photon upconversion.
Perovskite light-emitting diodes
Triplet fusion upconversion nanocapsules for volumetric 3D printing
Anthracene Diphosphate Ligands for CdSe Quantum Dots; Molecular Design for Efficient Upconversion
Photoredox catalysis using infrared light via triplet fusion upconversion
Sensitization of silicon by singlet exciton fission in tetracene
Efficient Blue and White Perovskite Light-Emitting Diodes via Manganese Doping
Reducing Architecture Limitations for Efficient Blue Perovskite Light‐Emitting Diodes
Tunable Light-Emitting Diodes Utilizing Quantum-Confined Layered Perovskite Emitters
Triplet Harvesting from Intramolecular Singlet Fission in Polytetracene
Solid-state infrared-to-visible upconversion sensitized by colloidal nanocrystals
Nanoscale transport of charge-transfer states in organic donor–acceptor blends
Solid state photon upconversion utilizing thermally activated delayed fluorescence molecules as triplet sensitizer
Spin-dependent charge transfer state design rules in organic photovoltaics
The Role of Electron–Hole Separation in Thermally Activated Delayed Fluorescence in Donor–Acceptor Blends
A transferable model for singlet-fission kinetics
Energy harvesting of non-emissive triplet excitons in tetracene by emissive PbS nanocrystals
Singlet fission efficiency in tetracene-based organic solar cells
External Quantum Efficiency Above 100% in a Singlet-Exciton-Fission–Based Organic Photovoltaic Cell
Singlet Exciton Fission Photovoltaics
Slow light enhanced singlet exciton fission solar cells with a 126% yield of electrons per photon
Enhanced external quantum efficiency in an organic photovoltaic cell via singlet fission exciton sensitizer