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dr Mircea Modreanu

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Affiliation:


University College Cork, Tyndall National Institute

address: Lee Maltings, Prospect Row, Cork, , Ireland
phone: +353-21-4904177
fax: +353-21-4270271
web: http://www.tyndall.ie

Participant:


E-MRS Fall Meeting 2007

began: 2007-09-17
ended: 2007-11-30
Presented:

E-MRS Fall Meeting 2007

Investigation on optical properties and conduction mechanism of p-type SrCu2O2

Participant:


E-MRS Fall Meeting 2008

began: 2008-09-15
ended: 2008-09-19
Presented:

E-MRS Fall Meeting 2008

Exploring the optical and electrical properties of SrCu2O2: theoretical and experimental studies

E-MRS Fall Meeting 2008

Optical and electrical properties of oriented SrCu2O2 thin films grown by pulsed laser deposition

E-MRS Fall Meeting 2008

Optical spectroscopy: from experimental measurements to band structure determination

Publications:


  1. Comparable study of ZnInO & ZnN as channel layers for transparent transistors
  2. Correlation between surface and electrical properties of ITO and ITON thin films
  3. Derivation of the complex refractive index in the infrared region of the spectrum from the analysis of optical measurements
  4. Effect of Chlorine doping on electrical and optical properties of ZnO thin films
  5. Exploring the optical and electrical properties of SrCu2O2: theoretical and experimental studies
  6. Investigation on optical properties and conduction mechanism of p-type SrCu2O2
  7. Optical and electrical properties of oriented SrCu2O2 thin films grown by pulsed laser deposition
  8. Optical characterization of HfO2 by spectroscopic ellipsometry: dispersion models and direct data inversion
  9. Optical spectroscopy: from experimental measurements to band structure determination
  10. Phase transformation during the annealing of thin films in Sr-Cu-O system analyzed with in situ studies by X-ray diffraction and Raman spectroscopy
  11. Undoped and Al-doped ZnO films with tuned properties by pulsed laser deposition
  12.  Study of the growth conditions of SrCu2O2 thin films deposited by injection MOCVD



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