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Cengiz Ozkan
Ph.D. (Materials Science) Stanford University, Stanford, CA 1997 Senior Development Engineer, Applied Micro Circuits Corporation, San Diego, CA 1997-2001 Consulting Assistant Professor, Stanford University, Stanford, CA 2000-2001 Research Topics Cengiz Ozkan's research interests are in the areas of wafer fab processing, thin film mechanics and nanotechnology. His research in thin films emphasized strain relaxation, defect formation and morphological evolution in heteroepitaxial thin films and reliability of microelectronic devices. His current research is focused on self-assembly of structures and nanofabrication in semiconductors and polymers and fabrication of micro- and nano- electromechanical systems for biosensing and mechanical testing. He organized symposiums for the American Society for Mechanical Engineers-MMC 2001 Meeting in San Diego, CA and for the Fall 2001 Meeting of the Materials Research Society in Boston, MA. He is a member of the Materials Research Society, the Biomedical Engineering Society, and the American Society for Mechanical Engineers. His awards include a Ph.D. Fellowship by the North Atlantic Treaty Organization. SELECTED PUBLICATIONS E. Ata, A.L. Birkbeck, M. Ozkan, C.S. Ozkan, R. Flynn, M. Wang, and S. Esener, “Optical Manipulation of Objects in Microfluidic Devices, Materials Research Society Proceedings, BioMEMS and Bionanotechnology, Vol. 729, 7 (2002) Tunaboylu, B., Ring, K. Esener, S., Ozkan, C.S., Ata, A, "Precipitate Splitting in Piezoelectric Thin Films", Journal of Materials Research, 16:10, 2763 (2001) M. Ozkan, C.S. Ozkan, O. Kibar, M. Wang, S. Bhatia, S. Esener, "Heterogeneous Integration through Electrokinetic Migration", Engineering in Medicine and Biology, 20:6, 144 (2001) C.S. Ozkan and H. Gao "Electric Field Induced Self Assembly and Template Pattering of Polymer Microstructures", Materials Research Society Proceedings, Electronic, Optical and Optoelectronic Polymers and Oligomers, Vol. 665, C.8.46.1 (2001) C.S. Ozkan, E. Ata, M. Ozkan, and S. Esener, “Optical Manipulation of Inorganic and Organic Objects in Soft Microfluidic Devices”, Materials Research Society Proceedings, Materials Science of Microelectromechanical Systems, Vol. 657, 73 (2000) C.S. Ozkan, W.D. Nix and H. Gao, "Stress induced surface evolution: anisotropy of the 2-D roughening mode", Journal of Materials Research, 14:8, 3247 (1999) WWW:Research Email:cozkan@engr.ucr.edu Extension: 5016 |
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