Energy Filtering Non-Equilibrium Devices

Akronym

EFINED

Bidragets beskrivning

This project aims for revolutionary energy filtering nano-devices for information and communications technology (ICT). It is at the intersection of phononics, photonics, nanoscale electro-thermal devices and molecular engineering. By building new energy filtering devices down to molecular scales we aim to generate new knowledge and understanding of the electronic, phononic and near-field energy/heat fluxes at the fundamental limits of nano-scale energy management, and to demonstrate novel proof-of-concept non-equilibrium phonon engineered electro-thermal devices in real applications. The efficient nano-scale thermal management necessitate developing new theoretical and experimental tools for understanding and mastering the individual non-equilibrium energy/particle channels and inter-channel couplings. Control of the physical mechanisms behind non-equilibrium electronic energy filtering effects will be firstly addressed by non-linear transport in molecular junctions by developing new research tools that combine state-of-the-art molecular synthesis, bolometers, scanning probe microscopy technologies and theoretical modelling. In parallel with the molecular bottom-up approach, we will work with scalable thermionic nano-junctions, which not only have great technological potential of their own but also serve as a model system for the molecular devices. By employing non-linear out of equilibrium electro-thermal effects in molecular and scaled-down junction systems, we pursue the realization of proof-of-concept ICT devices utilizing these technologies within the time span of the project. This project will combine synergies in theory, experiment and technology-development covering different fields from chemistry to electronics. The project partners, who are leaders in their respective fields, form a consortium that is uniquely positioned to achieve the ambitious objectives.
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Startår

2018

Slutår

2022

Beviljade finansiering

UNIVERSITY OF DURHAM (UK)
405 253.75 €
Participant
CARL VON OSSIETZKY UNIVERSITAET OLDENBURG (DE)
565 750 €
Participant
INSTITUT NATIONAL DES SCIENCES APPLIQUEES DE LYON (FR)
11 250 €
Third party
UNIVERSITE LYON 1 CLAUDE BERNARD (FR)
18 125 €
Third party
IBM RESEARCH GMBH (CH)
597 900 €
Participant
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (FR)
473 463.75 €
Participant

Beviljat belopp

2 919 038 €

Finansiär

Europeiska unionen

Typ av finansiering

Research and Innovation action

Ramprogram

Horizon 2020 Framework Programme

Utlysning

Programdel
EXCELLENT SCIENCE - Future and Emerging Technologies (FET) (5216)
FET Open (5217)
Tema
FET-Open research and innovation actions (FETOPEN-01-2016-2017)
Utlysnings ID
H2020-FETOPEN-1-2016-2017

Övriga uppgifter

Finansieringsbeslutets nummer

766853

Identifierade teman

other