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Update Data    hkavak@cu.edu.tr    
Last update: 16/02/2022
 
Name:
Hamide Surname:  Kavak
Institution: Cukurova University: Cukurova Universitesi
Type of Institution: University
ORCID number: https://orcid.org/0000-0002-9810-2640
Google Scholar: https://scholar.google.com.tr/citations?user=XplVjCIAAAAJ&hl=en
Publons: https://publons.com/researcher/1376383/hamide-kava
Research Gate: https://www.researchgate.net/lab/Hamide-Kavak-Lab
Country: Turkey
WEB address: https://avesis.cu.edu.tr/hkavak/
Working groups of interest
-WG1 - Advances in Porous Materials and Technologies
-WG3 - Energy
Keywords
- Energy
- Oxides
- Porous Semiconductors
- Smart Functional Surfaces
Research field (Free keywords) metal oxides, semiconductors, photovoltaic,
Scientific expertise Our research focus extends from growth and characterization of functional semiconductor materials to fabrication and simulation of devices for various applications. In our group, we work on growth/synthesis of semiconducting thin films employing several techniques such as: Pulsed Filtered Cathodic Arc, Electron Cyclotron Resonance Microwave Chemical Vapor Deposition, Spin Coating and Electrochemical Deposition. Currently, we are working on next generation absorber layer for photovoltaic applications. Growth recipes for a variety of functional semiconductor materials are being optimized through a detailed materials characterization process including structural, optical, electrical, and surface/morphological characterization tools.
Capabilities My research is based on fabrication and characterization semiconductor materials such as ZnO, Cu2O, CZTS, perovskite material for solar cell application. At the meantime, I work on amorphous carbon, nitrogen doped carbon for electronic device applications.
Relevant publications
(6 max.)
N. H. Erdoğan, T. Kutlu, N. Sedefoğlu, H. Kavak, Effect of Na doping on microstructures, optical and electrical properties of ZnO thin films grown by sol-gel method. Journal of Alloys and Compounds, 881, 160554 (2021)
T. Özdal, H. Kavak, Single step amperometric growth of CZTS thin film: Deposition current and stoichiometry relationship. Ceramics International, 47, 24841–24851(2021)
Ö. Çelikel, H. Kavak, Catalyst free carbon nanowalls grown on glass and silicon substrates by ECR-MPCVD method. Diamond and Related Materials 120 (2021) 108610
Projects
(3 max.)
Photovoltaic Properties of Spin Coated ZnO/Cu2O Solar Cell.
Fabrication and Characterization of CZTS Based Heterojuctions.
 
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