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environment featuring a wide range of research activities, including QM/MM simulations, ionic liquid simulations, and excited-state characterization. The aim of this PhD thesis is the atomistic modeling
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exciton transport to the reaction center or to a donor-acceptor interface, respectively. Characterizing, modeling and improving exciton transport properties in molecular materials remain essential tasks in
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intensive research during the last decade, high performances and recyclability are still considered as antagonist properties.2 On-demand catalysis appears as the most suitable technology to overcome
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the geometry of disk-jet system, the redshift, the known properties of the central engine, the spectral properties and classifications, the parsec-scale radio structure. He/she will determine whether the 'good
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materials derived from biomass, mainly plant-based. He or she will collaborate with numerous researchers and engineers within the laboratory who are specialists and managers of various polymer
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-researchers, experimentalists, and theoreticians, and its research activity is supported by around sixty engineers, technicians, and administrative staff. The laboratory welcomes a large number of undergraduate