Supervisões em Curso
Projectos
Couro-Inteligente Para Monitorização da Saúde, Bem-Estar e Segurança Em Veículos Automóveis (CARDIOLEATHER)
ParticipanteIndustry National
O projeto CardioLeather visa o desenvolvimento de um couro-condutor integrado com dispositivos de aquisição de sinais fisiológicos, para serem aplicados em volantes e outras superficies do interior do veiculo, permitindo a monitorização não intrusiva da identidade e saúde do condutor e passageiros.Materiais para Eléctrodos de Baterias de Iões de Lítio Baseados em Redes Metalo-Orgânicas com Actividade Redox; (RedoxMOFs)
ParticipanteFundação para a Ciência e a Tecnologia
Molecular design of electrically conductive COFs as efficient electrodes for lithium batteries (ELECTROCOFS)

CoordenadorEuropean Comission
Used to power electric vehicles and store renewable energy, Li-ion batteries (LIBs) can help reduce carbon emissions. However, LIBs are based on transition metal oxide cathodes. This means they have limited energy density, and it also raises environmental concerns. The EU-funded ELECTROCOFS project will explore organic materials as alte...Publicações
Tuning the Rectification Ratio by Changing the Electronic Nature (Open-Shell and Closed-Shell) in Donor–Acceptor Self-Assembled Monolayers
M. Souto, L. Yuan, D. Morales, L. Jiang, I. Ratera, C. Nijhuis, J. Veciana
2017, J. Am. Chem. Soc., 139, 4262-4265.
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Conflicting evidence for ferroelectricity
G. D’Avino, M. Souto, M. Masino, J. K. H. Fischer, I. Ratera, X. Fontrodona, G. Giovannetti, M. J. Verstraete, A. Painelli, P. Lunkenheimer, J. Veciana, A. Girlando
2017, Nature, 547, E9-E10.
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Synthesis and Characterization of Ethylenedithio-MPTTF-PTM Radical Dyad as Potential Neutral Radical Conductor
M. Souto, D. Bendixen, M. Jensen, V. Díez-Cabanes, J. Cornil, J. O. Jeppesen, I. Ratera, C. Rovira, J. Veciana
2016, Magnetochemistry, 2, 46.
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Understanding the Influence of the Electronic Structure on the Crystal Structure of a TTF-PTM Radical Dyad
S. Vela, M. Souto, I. Ratera, C. Rovira, J. Veciana
2016, J. Phys. Chem. A , 120, 10297-10303.
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Three Redox States of a Diradical Acceptor–Donor–Acceptor Triad: Gating the Magnetic Coupling and the Electron Delocalization
M. Souto, V. Lloveras, S. Vela, M. Fumanal, I. Ratera, J. Veciana
2016, J. Phys. Chem. Lett., 7, 2234-2239.
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Pressure-Induced Conductivity Conductivity in a Neutral Non-Planar Spin-Localized Radical
M. Souto, H. Cui, M. Peña-Álvarez, V. G. Baonza, H. O. Jeschke, M. Tomic, R. Valentí, D. Blasi, I. Ratera, C. Rovira, J. Veciana
2016, J. Am. Chem. Soc., 138, 11517-11525.
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Self-assembled architectures with segregated donor and acceptor units of a dyad based on a monopyrrolo-annulated TTF-PTM radical
M. Souto, M. Solano, I. Ratera, M. Jensen, D. Bendixen, F. Delchiaro, A. Girlando, A. Painelli, J. O. Jeppesen, C. Rovira and J. Veciana
2015, Chem. Eur. J. , 21, 8816-8825.
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Syntheses and solid state structures of cyclam-based copper and zinc compounds
L. G. Alves, M. Souto, F. Madeira, P. Adão, R. F. Munhá, A. M. Martins
2014, J. Organomet. Chem., 760, 130-137.
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Intramolecular electron transfer and charge delocalization in bistable donor–acceptor systems based on perchlorotriphenylmethyl radicals linked to ferrocene and tetrathiafulvalene units
M. Souto, D. Morales, J. Guasch, I. Ratera, C. Rovira, A. Painelli, and J. Veciana
2014, J. Phys. Org. Chem. , 27, 465-469.
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Bistability of Fc-PTM-Based dyads: The role of the donor strength
J. Guasch, L. Grisanti, S. Jung, D. Morales, G. D’Avino, M. Souto, X. Fontrodona, A. Painelli, F. Renz, I. Ratera, and J. Veciana
2013, Chem. Mater., 25, 808-814.
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