Robert E. Rettew, Ph.D.

Affiliations: 
2011 Materials Science and Engineering Georgia Institute of Technology, Atlanta, GA 
Area:
Materials Science Engineering, Inorganic Chemistry
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"Robert Rettew"

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Faisal M. Alamgir grad student 2011 Georgia Tech
 (Near-surface study of structure-property relationships in electrochemically fabricated multi-component catalysts.)
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Publications

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Gittens RA, Olivares-Navarrete R, Rettew R, et al. (2013) Electrical polarization of titanium surfaces for the enhancement of osteoblast differentiation. Bioelectromagnetics. 34: 599-612
Rettew RE, Cheng S, Sauerbrey M, et al. (2013) Near surface phase transition of solute derived Pt monolayers Topics in Catalysis. 56: 1065-1073
Cheng S, Rettew RE, Sauerbrey M, et al. (2011) Architecture-dependent surface chemistry for Pt monolayers on carbon-supported Au. Acs Applied Materials & Interfaces. 3: 3948-56
Rettew RE, Meyer A, Senanayake SD, et al. (2011) Interactions of oxygen and ethylene with submonolayer Ag films supported on Ni(111). Physical Chemistry Chemical Physics : Pccp. 13: 11034-44
Rettew RE, Allam NK, Alamgir FM. (2011) Interface architecture determined electrocatalytic activity of Pt on vertically oriented TiO(2) nanotubes. Acs Applied Materials & Interfaces. 3: 147-51
Meyer A, Flege JI, Senanayake SD, et al. (2011) In situ oxidation of ultrathin silver films on Ni(111) Ibm Journal of Research and Development. 55
Meyer A, Flege JI, Rettew RE, et al. (2010) Ultrathin silver films on Ni(111) Physical Review B - Condensed Matter and Materials Physics. 82
Rettew RE, Guthrie JW, Jaye C, et al. (2009) Synthesis and characterization of monolayer bimetallic surfaces: A synchrotron NEXAFS and XPS study Ecs Transactions. 19: 97-106
Rettew RE, Guthrie JW, Alamgir FM. (2009) Layer-by-layer Pt growth on polycrystalline au: Surface-limited redox replacement of overpotentially deposited Ni monolayers Journal of the Electrochemical Society. 156
Idriss H, Scott M, Llorca J, et al. (2008) A phenomenological study of the metal-oxide interface: the role of catalysis in hydrogen production from renewable resources. Chemsuschem. 1: 905-10
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