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Update Data    bkaynar@hacettepe.edu.tr    
Last update: 16/02/2022
 
Name:
Mehmet Burak Surname:  Kaynar
Institution: Hacettepe University
Type of Institution: University
ORCID number: https://orcid.org/0000-0002-4854-8142
Google Scholar: https://scholar.google.com.tr/citations?user=JySiigIAAAAJ&hl=tr
Publons: https://publons.com/researcher/2646865/mehmet-bura
Country: Turkey
WEB address: http://www.mehmetburakkaynar.com/
Working groups of interest
-WG1 - Advances in Porous Materials and Technologies
-WG3 - Energy
-WG4 - Environment
Research field (Free keywords) Water condensation, hydrogen storage, radar absorbing materials, thermal characterisation, electrical characterisation
Scientific expertise I am an Applied physisist assistant proffesor at Nanotechnology and Nanomedicine Department at Hacettepe University Turkey and an Applied Physisist who is working on 4 main topics; water, clean energy, magnetic nanostructures and sample production/characterisation system design. My PhD thesis is about magnetic materials for radar absorption coating and I have 3 ongoing national projects on this topic. I have been also working on water collection from air by nanoporous surfaces and nanoporous filters for water filtration as social innovation projects which
Capabilities -Magnetic Characterisation (2K -1000K, -+9T) -Heat capacity and thermal conductivity measurements (2K-350K) -Electrical measurments (2k - 350 K) -X-ray powder difractometer -UV-VIS spectrophotometer -Sputter systems (up to 4 gun) -CVD systems -Planetary ball mills (600 rpm) -arc and induction furneces
Relevant publications
(3 max.)
Solvent free fabrication of nanoporous TiO2 filters using organic-inorganic nanocomposites 10.1016/j.powtec.2012.09.00
Synthesis and magnetic properties of nanocrystalline BaFe12O19 10.1016/j.ceramint.2015.05.078
Synthesis of ZnFe2O4 from metallic zinc and iron by wet-milling process 10.1016/j.mseb.2005.04.006
Projects
(2 max.)
Determination of the effect of morphology and crystal structure on the water collection efficiency and photocatalytic properties of nanoporous oxide coatings.
Radar Kesit Alanı Düşürücü Hafifletilmiş Örtülerin Geliştirilmes
 
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