001     768163
005     20230207130408.0
024 7 _ |a G:(EU-Grant)686053
|d 686053
|2 CORDIS
024 7 _ |a G:(EU-Call)H2020-NMP-2015-two-stage
|d H2020-NMP-2015-two-stage
|2 CORDIS
024 7 _ |a corda__h2020::686053
|2 originalID
035 _ _ |a G:(EU-Grant)686053
150 _ _ |a Towards Replacement of Critical Catalyst Materials by Improved Nanoparticle Control and Rational Design
|y 2016-06-01 - 2019-05-31
371 _ _ |a AALTO KORKEAKOULUSAATIO SR
|b AALTO
|d Finland
|e http://www.aalto.fi
|v CORDIS
371 _ _ |a LABORATORIO IBERICO INTERNACIONAL DE NANOTECNOLOGIA
|b LIN INL
|d Portugal
|e http://www.inl.int
|v CORDIS
371 _ _ |a TETHIS SPA
|b TET
|d Italy
|e http://www.tethis-lab.com
|v CORDIS
371 _ _ |a Forschungszentrum Jülich
|b Forschungszentrum Jülich
|d Germany
|e https://www.ptj.de/
|v CORDIS
371 _ _ |a TTY-SAATIO
|b TAMPERE UNIVERSITY OF TECHNOLOGY
|d Finland
|e http://www.tut.fi
|v CORDIS
371 _ _ |a Swansea University
|b Swansea University
|d United Kingdom
|e http://www.swansea.ac.uk/
|v CORDIS
371 _ _ |a NPL MANAGEMENT LIMITED
|d United Kingdom
|e http://www.npl.co.uk
|v CORDIS
371 _ _ |a NANOLAYERS RESEARCH COMPUTING LTD
|b NANOLAYERS RESEARCH COMPUTING
|d United Kingdom
|e http://www.nanolayers.com
|v CORDIS
371 _ _ |a SYNGASCHEM BV
|b Syngaschem BV
|d Netherlands
|e http://www.syngaschem.com
|v CORDIS
371 _ _ |a TAMPEREEN KORKEAKOULUSAATIO SR
|b TAMPERE UNIVERSITY
|d Finland
|e https://www.tuni.fi/en
|v CORDIS
371 _ _ |a University of Birmingham
|b University of Birmingham
|d United Kingdom
|e http://www.birmingham.ac.uk/index.aspx
|v CORDIS
372 _ _ |a H2020-NMP-2015-two-stage
|s 2016-06-01
|t 2019-05-31
450 _ _ |a CritCat
|w d
|y 2016-06-01 - 2019-05-31
510 1 _ |0 I:(DE-588b)5098525-5
|a European Union
|2 CORDIS
680 _ _ |a The CritCat proposal aims to provide solutions for the substitution of critical metals, especially rare platinum group metals (PGMs), used in heterogeneous and electrochemical catalysis. CritCat will explore the properties of ultra-small transition metal (TM) nanoparticles in order achieve optimal catalytic performance with earth-abundant materials. The emphasis will be on industrially-relevant chemical reactions and emerging energy conversion technologies in which PGMs play an instrumental role, particularly in the context of hydrogen and synthesis gas (syngas) fuels. The CritCat proposal includes all the aspects for rational catalyst design including novel catalyst synthesis, characterization, and performance testing by a range of academic and industry partners together with large-scale computational simulations of the relevant catalysts, substrates and model reactions using the latest computational methods. Particular attention is given to a strong feedback-loop mechanism where theory is an integral part of the experimental work packages. The experimental and theoretical data will be collected (descriptor database) and used for materials screening via machine learning techniques and new algorithms. The goal is to improve size, shape and surface structure control of the tailored nanoparticle catalysts via novel cluster/nanoparticle synthesis techniques that can produce samples of unrivalled quality. The research includes up-scaling of the size-selected catalyst nanoparticle samples up to macroscopic quantities, which will enable them to be included as basic technological components for realistic catalyst systems. The performance of the catalyst prototypes will be demonstrated for selected basic electrochemical reactions relevant to fuel cells and storage of renewable energy. The industrial partners bring their expertise in prototypes development and commercial deployment (TRL 3-4). The project involves cooperation with external research groups in USA and Japan.
909 C O |o oai:juser.fz-juelich.de:768163
|p authority:GRANT
|p authority
970 _ _ |a oai:dnet:corda__h2020::593e6aebfed69c3699cb7b98aeebec94
980 _ _ |a G
980 _ _ |a CORDIS
980 _ _ |a AUTHORITY


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Marc 21