Community Research and Development Information Service - CORDIS

Horizon 2020 project information and now also report summaries are available on CORDIS. All H2020 projects can be downloaded from the EU Open Data Portal .

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1
Charge carrier dynamics in metal oxides
ID: 695197
Start date: 2016-10-01, End date: 2021-09-30
Transition metal (TM) oxides (TiO2, ZnO, NiO) are large gap insulators that have emerged as highly attractive materials over the past two decades for applications in photocatalysis, solar energy conversion, etc., all of which rely on the generation of charge carriers, their...
Programme: H2020-EU.1.1.
Record Number: 202661
Last updated on: 2016-11-29
Photo Induced Collective Properties of Hybrid Halide Perovskites
ID: 670918
Start date: 2015-09-01, End date: 2020-08-31
The recent discovery of the organo-inorganic perovskite CH3NH3PbI3 as very efficient material in photoelectric conversion is multifaceted: it turns out that this compound is promising not only in photovoltaics, but it is lasing, it gives bright light emitting diodes, promising...
Programme: H2020-EU.1.1.
Record Number: 198233
Last updated on: 2016-11-29
Tunable Photonic Structures via Photomechanical Actuation
ID: 679646
Start date: 2016-05-01, End date: 2021-04-30
The next frontier in photonics is to achieve dynamic and externally tunable materials that allow for real-time, on-demand control over optical responses. Light is in many ways an ideal stimulus for achieving such control, and PHOTOTUNE aims at devising a comprehensive toolbox...
Programme: H2020-EU.1.1.
Record Number: 202565
Last updated on: 2016-09-14
Multi-revolution non-volatile magnetic sensors
ID: 665672
Start date: 2016-01-01, End date: 2017-06-30
Multi-revolution sensors that detect multiple rotations are being used in many areas of the automotive and automation industry. The current generation of discrete multi-revolution sensors has major drawbacks, such as complex architecture, limited applicability and high cost...
Programme: H2020-EU.1.1.
Record Number: 196351
Last updated on: 2016-08-23
Merging Nanoporous Materials with Energy-Efficient Spintronics
ID: 648454
Start date: 2015-09-01, End date: 2020-08-31
This Project aims to integrate engineered nanoporous materials into novel energy-efficient spintronic applications. Magnetic storage and magneto-electronic devices are conventionally controlled by means of magnetic fields (via electromagnetic induction) or using spin-polarized...
Programme: H2020-EU.1.1.
Record Number: 197871
Last updated on: 2015-07-10
List retrieved on: 2017-11-18
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