Projects funded by the NCN


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59 projects found matching your search criteria :

  1. The study of mechanisms of chiral symmetry breaking in liquid crystalline materials

    Call: OPUS 6 , Panel: ST3

    Principal investigator: prof. Lech Longa

    Uniwersytet Jagielloński, Wydział Fizyki, Astronomii i Informatyki Stosowanej

  2. Active plasmonic nanomaterials using liquid-crystals.

    Call: PRELUDIUM 11 , Panel: ST5

    Principal investigator: Maciej Bagiński

    Uniwersytet Warszawski, Wydział Chemii

  3. Elaboration of advanced color converters for white LEDs based on the epitaxial structures of garnet compounds using liqu...

    Call: OPUS 23 , Panel: ST8

    Principal investigator: prof. Yuriy Zorenko

    Uniwersytet Kazimierza Wielkiego

  4. Development of new scalable methods of the production of acid-free liquid crystals for use in the production of fibers a...

    Call: PRELUDIUM BIS 4 , Panel: ST5

    Principal investigator: dr hab. Agnieszka Łękawa-Raus

    Politechnika Warszawska

  5. Rational design of multi-functional liquid crystals for stimuli-responsive materials containing polyoxometalates

    Call: SONATINA 8 , Panel: ST5

    Principal investigator: dr Nahir Vadra Garcia

    Uniwersytet im. Adama Mickiewicza w Poznaniu

  6. Liquid crystalline thin films for the synthesis of morphologically chiral perovskite nanocrystals with enhanced dissymme...

    Call: OPUS 27 , Panel: ST5

    Principal investigator: dr hab. Wiktor Lewandowski

    Uniwersytet Warszawski

  7. Liquid crystalline systems as sources of electrically tunable laser white light

    Call: OPUS 16 , Panel: ST8

    Principal investigator: prof. Jarosław Myśliwiec

    Politechnika Wrocławska

  8. Optical tweezers based translational and rotational active microrheology of soft materials

    Call: SONATA 15 , Panel: ST3

    Principal investigator: dr Paweł Michał Karpiński

    Politechnika Wrocławska

  9. Dynamic control of hybrid layers for plasmon-enhanced energy transmitting or converting systems, obtained by anti-galvan...

    Call: OPUS 18 , Panel: ST5

    Principal investigator: dr Michał Wójcik

    Uniwersytet Warszawski, Wydział Chemii