Gary C. Tepper

Affiliations: 
Mechanical Engineering Virginia Commonwealth University, Richmond, VA, United States 
Area:
Mechanical Engineering, Energy
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"Gary Tepper"

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Royal F. Kessick grad student 2002 VCU
Soumayajit Sarkar grad student 2007 VCU
Ezzat S. Elshazly grad student 2010 VCU
Negar Ghochaghi grad student 2014 VCU
Hector E. Medina grad student 2014 VCU
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Publications

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Ghochaghi N, Taiwo A, Winkel M, et al. (2015) Electrospun polystyrene coatings with tunable wettability Journal of Applied Polymer Science. 132
Bucher TM, Tafreshi HV, Tepper GC. (2013) Modeling performance of thin fibrous coatings with orthogonally layered nanofibers for improved aerosol filtration Powder Technology. 249: 43-53
Ho T, Ghochaghi N, Tepper G. (2013) Development of magnetic fabrics with tunable hydrophobicity Journal of Applied Polymer Science. 130: 2352-2358
Emami B, Tafreshi HV, Gad-El-Hak M, et al. (2012) Effect of fiber orientation on shape and stability of air-water interface on submerged superhydrophobic electrospun thin coatings Journal of Applied Physics. 111
Bucher TM, Emami B, Tafreshi HV, et al. (2012) Modeling resistance of nanofibrous superhydrophobic coatings to hydrostatic pressures: The role of microstructure Physics of Fluids. 24
Ochanda FO, Samaha MA, Tafreshi HV, et al. (2012) Salinity effects on the degree of hydrophobicity and longevity for superhydrophobic fibrous coatings Journal of Applied Polymer Science. 124: 5021-5026
Ochanda FO, Samaha MA, Tafreshi HV, et al. (2012) Fabrication of superhydrophobic fiber coatings by DC-biased AC-electrospinning Journal of Applied Polymer Science. 123: 1112-1119
Samaha MA, Ochanda FO, Tafreshi HV, et al. (2011) In situ, noninvasive characterization of superhydrophobic coatings. The Review of Scientific Instruments. 82: 045109
Mateo JN, Kulkarni SS, Das L, et al. (2011) Wetting behavior of polymer coated nanoporous anodic alumina films: transition from super-hydrophilicity to super-hydrophobicity. Nanotechnology. 22: 035703
Emami B, Bucher TM, Tafreshi HV, et al. (2011) Simulation of meniscus stability in superhydrophobic granular surfaces under hydrostatic pressures Colloids and Surfaces a: Physicochemical and Engineering Aspects. 385: 95-103
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