Coordinatore | UNIVERSITAET ZU KOELN
Organization address
address: ALBERTUS MAGNUS PLATZ contact info |
Nazionalità Coordinatore | Germany [DE] |
Sito del progetto | http://www.solarogenix.eu/ |
Totale costo | 3˙906˙486 € |
EC contributo | 2˙755˙708 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2012-SMALL-6 |
Funding Scheme | CP-FP |
Anno di inizio | 2013 |
Periodo (anno-mese-giorno) | 2013-02-01 - 2016-01-31 |
# | ||||
---|---|---|---|---|
1 |
UNIVERSITAET ZU KOELN
Organization address
address: ALBERTUS MAGNUS PLATZ contact info |
DE (KOELN) | coordinator | 725˙850.00 |
2 |
FUNDACIO INSTITUT DE RECERCA DE L'ENERGIA DE CATALUNYA
Organization address
address: C/ JARDINS DE LES DONES DE NEGRE 1 contact info |
ES (SANT ADRIA DE BESOS) | participant | 372˙400.00 |
3 |
FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V
Organization address
address: Hansastrasse 27C contact info |
DE (MUENCHEN) | participant | 365˙718.00 |
4 |
EIDGENOESSISCHE TECHNISCHE HOCHSCHULE ZURICH
Organization address
address: Raemistrasse 101 contact info |
CH (ZUERICH) | participant | 309˙800.00 |
5 |
TTY-SAATIO
Organization address
address: Korkeakoulunkatu 10 contact info |
FI (TAMPERE) | participant | 300˙000.00 |
6 |
SIEMENS AKTIENGESELLSCHAFT
Organization address
address: Wittelsbacherplatz 2 contact info |
DE (MUNCHEN) | participant | 249˙000.00 |
7 |
UNIWERSYTET WARSZAWSKI
Organization address
address: Krakowskie Przedmiescie 26/28 contact info |
PL (WARSAW) | participant | 232˙500.00 |
8 |
CONSORZIO INTERUNIVERSITARIO NAZIONALE PER LA SCIENZA E TECNOLOGIA DEI MATERIALI
Organization address
address: Via Giusti 9 contact info |
IT (FIRENZE) | participant | 200˙440.00 |
9 |
SACHTLEBEN PIGMENT GMBH
Organization address
city: KREFELD contact info |
DE (KREFELD) | participant | 0.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'The rising global interest in hydrogen as the fuel of future has prompted tremendous interest in the development of efficient hydrogen production technologies that may serve as economically viable solutions towards solar fuels.
The project SOLARGENIX will investigate novel nanostructured photocatalysts starting from comprehensive theoretical and experimental investigations on visible-light active meta-oxides for photoelectrochemical splitting of water to target the environmental hydrogen production from saline water by sun illumination. For this purpose, efficient multi-functional photoactive nano-catalysts will be developed whereby underlying atomic understanding of elementary chemical reactions and electrochemical processes will guard the scope of the project. The development of efficient nano-catalysts will be mastered by novel material combinations and interfacial engineering in nano-hetrostructures.
Furthermore the project will demonstrate the feasibility of this technology together with industrial partners to develop first module-sized demonstrators for testing under real operating conditions.'
EU-funded scientists have set their sights on solar-powered hydrogen (H2) production through photoelectrochemical (PEC) splitting of salt water molecules.
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