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Covalent crystalline organosilica networks – CrystOS
Self-organized organosilicas: Synthesis under thermodynamic control or by assembly of elementary bricks; Stable thin films for OFET.
Transmission lines and vias on a novel SUbstrate, metallic NAnowire based, for Millimeter-wave Interposer – TSUNAMI
Department of the Institut Néel, which enjoys of an exceptional environment to fabricate adequate, accurate,
Dynamic Reconstruction of Region Of Interest Tomography. Theory and Experiments. Reconstruction Dynamique de Région d'Intérêt en Tomographie. Théorie et Expérimentations. – DROITE
To reconstruct medical images from truncated radiographic projections of organs that are in motion during the data acquisition.<br />To develop solid theoretical bases for the development of robust and efficient algorithms.<br />To test and evaluate these methods in the context of interventional imaging, in orthopedics in the framework of pedicle screw insertion and in radiotherapy of lung tumours.
Eutectic ceramic for novel optimised yield turbine blade – CiNATRA
“interconnected”, without grain boundaries and with exceptional mechanical properties up to 1700°C (creep and
Redox modulation of luminescence : association of ruthenium organometallics and luminescent units – RuOxLux
The aim of the project is to develop novel fundamental issues for optical switching materials
‘WAR MADE SHANGHAI’: TOWARD A SPATIAL HISTORY OF 19th-20th CENTURY SHANGHAI (1842-1952) – WARS
This project proposes to explore the history of war and civilian violence in Shanghai over a long century (1842-1952) from the perspective of the spatial history and seeks to establish the determinants and modes of transformation the city that resulted from warfare. It sits at the interface of history and geography. The methodological approach to be adopted fits in the realm of «digital humanities«, in particular digital history.
Microwave assisted Milligel synthesis under continuous Flow – MIMIFLOW
Novel dosage forms of active species are strongly demanded for drug delivery. Polymer-based drug depots, which degrade in-vivo during a predefined time and dose are a promising strategy and will be investigated in MIMIFLOW. The syntheses will be performed in microwave reactors, with a dedicated focus on millifluidic continuous-flow systems in order to produce polymer networks with defined shapes and geometries for their specific applications.
Toward industrailisation of ultrathin CIGSe based solar cells – ULTRACIS_M
module efficiencies, keeping the benefit of the exceptional photovoltaic quality achieved by the CIGS technology
Ion transport through ion bio-channels confined inside nanopores: a combined theoretical and experimental project – TRANSION
Our project aims at confining Ion Bio-Channel (IBC) in solid-state nanopores and at investigating their functional properties .Our goal is thus to build bio-inspired nanoporous systems exhibiting exceptional ion transport properties.<br />In order to solve some of the scientific challenges associated with this project, a trans-disciplinary, i.e. biophysics/physics/chemistry, and trans-methodology (i.e. experiment/molecular simulation/analytical model) research consortium is proposed.