Research > Sayata Ghose > Sayata Ghose

 


Sayata Ghose

MS 226, NASA Langley Research Center, Hampton, VA 23681
Tel: 757-864-2094

Fax: 757-864-8312
Email: sayata.ghose@nianet.org

 

Research Interests

·         Polymer Processing

·         Nanocomposites

·         Adhesives and adhesion

 


 

Current Research

·         High temperature processing of polyimides

·         High temperature adhesives for bonding of titanium


 

Publications

·         Yi Lin, Kent A. Watson, Sayata Ghose, et al., “Rapid Mechanochemical Formation of Metal Nanoparticles on Carbon Nanotubes” J. Phys. Chem. C, 113 (33), 14858, (2009)

·         S. Ghose, et al.; “High Temperature VARTM of Phenylethynyl Terminated Imides” High Performance Polymers, 21 (5), 653 (2009).

·         C. J. Wohl, M. A. Belcher, S. Ghose, J. W. Connell, “Modification of the Surface Properties of Polyimide Films using POSS Deposition and Oxygen Plasma Exposure” Appl. Surf. Sci., 255(18), 8135, (2009).

·         Yi Lin, Kent A. Watson, Michael J. Fallbach, Sayata Ghose, et al., “Rapid, Solventless, Bulk Preparation of Metal Nanoparticle-Decorated Carbon Nanotubes"  ACS Nano, 3(4), 871, (2009).

·         Quentin J. Lineberry, Yan Cao, Yi Lin, Sayata Ghose, et al., “Mercury Capture from Flue Gas Using Palladium Nanoparticle-Decorated Substrates as Injected Sorbent” Energy and Fuels, 23(3) 1512, (2009).

·         Sayata Ghose, et al.; “Thermal Conductivity of Ethylene Vinyl Acetate Copolymer/Nanofiller Blends”, Composites Science and Technology, 68, 1843 (2008).

·         Sayata Ghose, et al.; “Thermal Conductivity of Ultem™/Nanofiller Blends”; High Performance Polymers, 18 (6), 961 (2006).

·         Sayata Ghose, et al.; “Fabrication and Characterization of High Temperature Resin/Carbon Nanofiber Composites”; High Performance Polymers, 18 (4), 527 (2006).

·         Sayata Ghose, et al.; “High Temperature Resin/Carbon Nanotube Fabrication”; Composites Science and Technology, 66, 1995 (2006).

·         Sayata Ghose, et al.; “Incorporation of Multiwalled Carbon Nanotubes into High Temperature Resin Using Dry Mixing Techniques”; Composites Part A, 37(3), 465-475 (2006).


 

 

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