Ruya Ozer

Affiliations: 
Chemistry University of Tulsa, United States 
 Chemistry Radford University, Radford, VA, United States 
Area:
Polymer Chemistry, Materials Science Engineering, Nanotechnology, Inorganic Chemistry, Organic Chemistry
Google:
"Ruya R Ozer"
Bio:

https://scholar.google.com/citations?user=VChZRTYAAAAJ&hl=en

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Parents

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John L. Ferry grad student 2002 University of South Carolina
 (Investigation of the photocatalytic properties of polyoxometalates.)
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Publications

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Pegg CE, Jones GH, Athauda TJ, et al. (2014) Facile preparation of ammonium alginate-derived nanofibers carrying diverse therapeutic cargo. Chemical Communications (Cambridge, England). 50: 156-8
Athauda TJ, LePage WS, Chalker JM, et al. (2014) High density growth of ZnO nanorods on cotton fabric enables access to a flame resistant composite Rsc Advances. 4: 14582-14585
Athauda TJ, Hari P, Ozer RR. (2013) Tuning physical and optical properties of ZnO nanowire arrays grown on cotton fibers. Acs Applied Materials & Interfaces. 5: 6237-46
Athauda TJ, Butt U, Ozer RR. (2013) Hydrothermal growth of ZnO nanorods on electrospun polyamide nanofibers Mrs Communications. 3: 51-55
Athauda TJ, Butt U, Ozer RR. (2013) One-dimensional hierarchical composite materials based on ZnO nanowires and electrospun blend nanofibers Rsc Advances. 3: 21431-21438
Athauda TJ, Ozer RR, Chalker JM. (2013) Investigation of cotton functionalized with ZnO nanorods and its interaction with E. coli Rsc Advances. 3: 10662-10665
Athauda TJ, Ozer RR. (2013) Nylon fibers as template for the controlled growth of highly oriented single crystalline ZnO nanowires Crystal Growth and Design. 13: 2680-2686
Stone SA, Gosavi P, Athauda TJ, et al. (2013) In situ citric acid crosslinking of alginate/polyvinyl alcohol electrospun nanofibers Materials Letters. 112: 32-35
Athauda TJ, Williams W, Roberts KP, et al. (2013) On the surface roughness and hydrophobicity of dual-size double-layer silica nanoparticles Journal of Materials Science. 48: 6115-6120
Athauda TJ, Neff JG, Sutherlin L, et al. (2012) Systematic study of the structure-property relationships of branched hierarchical TiO2/ZnO nanostructures. Acs Applied Materials & Interfaces. 4: 6917-26
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