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Matériaux semiconducteurs MXene/organique hybrides pour des dispositifs électroniques à mobilité élevée – MX-OSMOPED
The proposed project will couple delocalized-state charge-carrier transport in MXenes and in state-of-the-art organic semiconductor crystals (OSCs) to realize high-speed electronic devices fabricated by printing of MXene/OSC blends. We will synthesize inks comprising MXenes and OSCs, which will allo
Spin and charge transport in single crystal magnetic tunnel junctions – SPINCHAT
The understanding of the complex transport mechanisms in single crystal MTJs represents the key parameter towards the improvement and the better control of the tunnel magneto-resistive (TMR) effects in MTJ devices such as sensors, read-heads or magnetic non-volatile memories (MRAM). Within this proj
Monolithic INtegration of functional Oxides on Silicon for novel micro-system devices – MINOS
The objective of this project is to integrate high quality functional (piezoelectric and ferromagnetic) oxide heterostructures on Si using SrTiO3/Si(001) templates, in order to develop a novel generic demonstrator device which is expected to validate the ability of reversible electrical modulation i
Elaboration de nouveaux matériaux hybrides à base de gels d'oxyde de titane pour applications en photonique – LaGel
Metal oxides play an important role in many areas of chemistry, physics and materials science. One of the most studied oxides in this respect is titanium dioxide because of several applications of functionalized or doped materials. The developed organic-inorganic hybrid materials are of special impo
Molecular mechanism and reactivities of the complex and highly active Fe-hydrogenase from Clostridium acetobutylicum – CAFE
1) Scientific Background and objectives. Hydrogenases are the enzymes that catalyse the biological conversion between hydrogen and protons, a reaction that is of interest both from a biological and chemical viewpoint. They may be used as catalysts at the anode of bio-fuel cells, or for hydrogen prod
Lasers UV organiques – LUVORGAN
1. Scientific context and objective Many applications (data storage, sensing) demand laser sources emitting in the blue and near UV part of the spectrum, which are compact, easy to use and low-cost. In this context, organic materials are good candidates for the realization of this kind of sources, t
Hard x-ray PhotoElectron Spectroscopy : Ultrafast dynamics and Electron correlation – HAXPES
1- Scientific background and objective This project aims at acquiring a state-of-the-art high-resolution high-energy electron analyzer working in the hard x-ray region (2 – 12 keV).The analyzer is to be installed on the GALAXIES (inelastic x-ray scattering (IXS) and electron spectroscopy) beamline a
Linking mathematical programming formalism with combinatorial optimization formalism, through the study of generic scheduling and network synthesis problems – LMCO
This project is a three year project which puts together people who used to respectively work on Discrete Mathematics, Combinatorial Optimization, Mathematical Programming, and embedded systems. Those people are located in three laboratories: - LIP6 Laboratory in PARIS VI, team animated by Philippe
Dynamic Polymers – Dynamic Interactive Systems for Constitutional Membranes – DYNAMERS
DYNAMERS est un projet interdisciplinaire de recherche fondamentale et appliquée qui a pour but de maîtriser les systèmes multivalents (polymères dynamiques, nanoparticules, surfaces, membranes) en utilisant une approche dynamique constitutionnelle afin de créer des dispositifs fonctionnels dont les
Optimisation des Procédés d'Elaboration par Refusion (Arc-Slag) – OPERAS
The aim of the project OPERAS is the development of numerical models for simulating the ESR (Electro Slag Remelting) and VAR (Vacuum Arc Remelting) processes. Both processes are based on the remelting of a consumable electrode of the required grade and subsequent solidification of the ingot which re