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3 025 (0,11s)

Project

Integrating plasmonic metal nanoparticles with photonic TiO2 nanosheets for synergistically water splitting and environmental photocatalysis (GA18-15613S)

The photochemical water splitting is one of the most promising strategies to directly convert solar energy to hydrogen. An extensive research is underway to develop advanced nanomaterials for elimination of hazardous pollutants from...

Nano-materials (production and properties)

  • 2018 - 2023
  • 9 423 tis. Kč
  • 8 754 tis. Kč
  • GA ČR
Project

Advanced semiconductor materials for photoelectrochemical water splitting (GAP108/12/2104)

Project is focused on the detailed study of high quality nanostructured films of semiconducting oxides as TiO2, WO3, and Fe2O3 for photoelectrochemical water splitting using of materials for solar water splitting, ...

JJ - Ostatní materiály

  • 2012 - 2015
  • 9 957 tis. Kč
  • 9 957 tis. Kč
  • GA ČR
Project

Novel photocathode and photoanode materials for solar water splitting (GA17-20008S)

of photoelecrodes for the solar water splitting will be achieved by i) precise control photoelectrodes will form a tandem cell for non-assisted solar water splitting. and multi-layer structures suitable as photoca...

JJ - Ostatní materiály

  • 2017 - 2019
  • 7 315 tis. Kč
  • 6 751 tis. Kč
  • GA ČR
Project

Photocatalytic Reduction of CO2 (GC14-35327J)

but simultaneously convert it into more useful compounds. The photocatalytic water splitting water splitting. The aim of the project will be the complex new information about......

CI - Průmyslová chemie a chemické inženýrství

  • 2014 - 2016
  • 2 160 tis. Kč
  • 2 160 tis. Kč
  • GA ČR
Project

Photocatalytic ceramic nanomaterials and coatings for photolysis of water and polar compounds (OC 105)

study of preparation and properties of photocatalytic oxide materials; photocatalytic splitting of water into hydrogen and oxygen...

JJ - Ostatní materiály

  • 2006 - 2009
  • 1 600 tis. Kč
  • 1 600 tis. Kč
  • MŠMT
Project

Advanced nano-heterostructures as photoanodes for solar water splitting (8E15B009)

The main aim of the project is the preparation of new types of heterogeneous nanostructured photoanodes for photoelectrochemical water oxidation that will lead to the increase of the overall efficiency of this process. The basic components o...

CG - Elektrochemie

  • 2016 - 2017
  • 478 tis. Kč
  • 382 tis. Kč
  • MŠMT
Project

Advanced photocatalytic materials for water splitting and their rational design (GA17-12800S)

Project aims at targeted preparation of advanced photocatalytic materials for photo(electro)catalytic generation of hydrogen and advanced oxidative processes. Targeted preparation of the novel oxides will explore anisotropy of the hydrogen and oxygen...

CG - Elektrochemie

  • 2017 - 2019
  • 4 401 tis. Kč
  • 3 867 tis. Kč
  • GA ČR
Project

Redox active metallocomplexes as catalysts for production of energetically rich materials (8X20018)

The main aim of the project is the synthesis and spectroscopic, electrochemical, analytical and theoretical characterisation of competent catalysts for water splitting as well as carbon dioxide reduction in the framework of internat...

Environmental sciences (social aspects to be 5.7)

  • 2020 - 2022
  • 250 tis. Kč
  • 250 tis. Kč
  • MŠMT
Project

Study of catalytically active nanoparticles and nanostructures for the synthesis of hydrogen (LD12004)

Project is focused on the preparation of colloidal materials and nanostructures based on modified titanium compounds for photocatalytic decomposition of water and the study of the relationships between synthesis, structure and photocatalytic...

CA - Anorganická chemie

  • 2012 - 2015
  • 1 707 tis. Kč
  • 1 707 tis. Kč
  • MŠMT
Project

Structure and dynamics of excited and redox states of photocatalytic complexes (LD14129)

We will carry out a collaborative research in the framework of the COST Action CM1202 "Supramolecular photocatalytic water splitting" that is aimed at fundamental understanding of processes involved in photocatalyzed splitting

CF - Fyzikální chemie a teoretická chemie

  • 2014 - 2016
  • 2 122 tis. Kč
  • 2 122 tis. Kč
  • MŠMT
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