Upcoming Chemistry Physics & Astronomy
Radical catalysed singlet fission
Summary
Original abstract (not yet simplified)Singlet fission (SF) is a process in which two triplet excited states are generated from one singlet excited state. SF can be used to increase current in solar cells, reducing losses from thermalisation and boosting solar cell efficiency, but poor triplet yields and short lifetimes limit the implementation of SF in devices. Stable organic radicals are an emerging class of...
View original technical description
Singlet fission (SF) is a process in which two triplet excited states are generated from one singlet excited state. SF can be used to increase current in solar cells, reducing losses from thermalisation and boosting solar cell efficiency, but poor triplet yields and short lifetimes limit the implementation of SF in devices. Stable organic radicals are an emerging class of materials that exhibit excited doublet states rather than singlet and triplet, allowing them to mediate otherwise spin-forbidden process. RADCAT will explore new frontiers of SF by unlocking energy transfer mechanisms that enable organic radicals to catalyse a step-wise SF process. As well as providing a new path to long-lived triplet excitons that can be used to increase the efficiency of solar cells, RADCAT will investigate the magnetic field sensitivity of these energy transfer processes, and thus design new magnetic field sensors for applications in quantum information science and photonics. The action combines the fellow’s previous research in SF and photophysics with the expertise of the host group in organic radicals and spin chemistry, and will enhance the fellows career by building new skills in spin and magneto-optical effects.
Related Research
Grants with similar aims, by meaning.
Singlet fission in carotenoids
2 for 1: Quantum Dynamics of Singlet Fission
Design and Characterization of Inverted Singlet and Triplet Excited States with Organic Radicals (DECOR)
Understanding the spin-entangled triplet-pair state in organic semiconductors
Photophysics of radical-based organic semiconductors for spin-optoelectronic devices
Original classification
HORIZONPlain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research. Is something wrong? Let us know