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Materials and devices: spectroscopic properties and applications

  • Cours (CM) 16h
  • Cours intégrés (CI) -
  • Travaux dirigés (TD) 8h
  • Travaux pratiques (TP) -
  • Travail étudiant (TE) -

Langue de l'enseignement : Français

Description du contenu de l'enseignement

  • General introduction to photophysics and photochemistry of organic and organometallic molecules:
    Fluorescence, phosphorescence, non-radiative processes. Time resolved absorption and emission. Photoinduced energy transfer, photoinduced electron transfer.
  • From molecules to devices (OLED, LEEC, sensors):
    How can we generate the excited states without light: chemiluminescence, electroluminescence, electrochemiluminescence. Solid state devices: organic light emitting diodes, light emitting electrochemical cells, devices for diagnostics
  • Luminescence and other physical phenomena (electron conduction, magnetoresistance….) in confined spaces (porous materials, self-assembled cavities…)
  • Exercise:
    How to calculate radiative and non-radiative rates (2 hours) practical demonstration of an energy transfer and how to calculate rates and efficiencies of photoinduced processes.

Compétences à acquérir

  • Basic photophysics
  • How to correlate chemical formulas to excited state properties
  • How to use the physical phenomena for applications.

Contact

Faculté de Chimie

1 RUE BLAISE PASCAL
67008 STRASBOURG
0368851672

Responsable

Luisa De Cola


MASTER - Chimie