Franco Cacialli, PhD
Affiliations: | Physics and Astronomy | UCL - London - UK |
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Sign in to add traineeDan Credgington | grad student | University College London (Physics Tree) | |
Giuseppe Maria Paternò | grad student | 2011-2015 |
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Publications
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Tejerina L, Rapidis AG, Rickhaus M, et al. (2022) A porphyrin pentamer as a bright emitter for NIR OLEDs. Journal of Materials Chemistry. C. 10: 5929-5933 |
Royakkers J, Guo K, Toolan DTW, et al. (2021) Molecular Encapsulation of Naphthalene Diimide (NDI) Based π-Conjugated Polymers: A Tool for Understanding Photoluminescence. Angewandte Chemie (International Ed. in English) |
Hou L, Zhang X, Cotella GF, et al. (2019) Optically switchable organic light-emitting transistors. Nature Nanotechnology |
Minotto A, Murto P, Genene Z, et al. (2018) Efficient Near-Infrared Electroluminescence at 840 nm with "Metal-Free" Small-Molecule:Polymer Blends. Advanced Materials (Deerfield Beach, Fla.). e1706584 |
Leventis A, Royakkers J, Rapidis AG, et al. (2018) Highly Luminescent Encapsulated Narrow Bandgap Polymers Based on Diketopyrrolopyrrole. Journal of the American Chemical Society |
Polito G, Robbiano V, Cozzi C, et al. (2017) Template-Assisted Preparation of Micrometric Suspended Membrane Lattices of Photoluminescent and Non-Photoluminescent Polymers by Capillarity-Driven Solvent Evaporation: Application to Microtagging. Scientific Reports. 7: 8351 |
Freeman DME, Musser AJ, Frost JM, et al. (2017) Synthesis and Exciton Dynamics of Donor-Orthogonal Acceptor Conjugated Polymers: Reducing the Singlet-Triplet Energy Gap. Journal of the American Chemical Society |
Steckler TT, Fenwick O, Lockwood T, et al. (2013) Near-infrared polymer light-emitting diodes based on low-energy gap oligomers copolymerized into a high-gap polymer host. Macromolecular Rapid Communications. 34: 990-6 |
Li P, Fenwick O, Yilmaz S, et al. (2011) Dual functions of a novel low-gap polymer for near infra-red photovoltaics and light-emitting diodes. Chemical Communications (Cambridge, England). 47: 8820-2 |
Liscio A, Palermo V, Fenwick O, et al. (2011) Local surface potential of π-conjugated nanostructures by Kelvin Probe Force microscopy: Effect of the sampling depth Small. 7: 634-639 |