Steven J. Limmer, Ph.D.

Affiliations: 
2004 University of Washington, Seattle, Seattle, WA 
Area:
Materials Science Engineering
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"Steven Limmer"

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Guozhong Cao grad student 2004 University of Washington
 (Sol electrophoretic growth of oxide nanostructures: Synthesis, properties and modeling.)
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Publications

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Limmer SJ, Yelton WG, Erickson KJ, et al. (2014) Recrystallized arrays of bismuth nanowires with trigonal orientation. Nano Letters. 14: 1927-31
Rochford C, Limmer SJ, Howell SW, et al. (2014) Planarized arrays of aligned, untangled multiwall carbon nanotubes with Ohmic back contacts Journal of Materials Research. 30: 315-322
Limmer SJ, Medlin DL, Siegal MP, et al. (2014) Using galvanostatic electroforming of Bi1-xSbx nanowires to control composition, crystallinity, and orientation Journal of Materials Research. 30: 164-169
Siegal MP, Limmer SJ, Lensch-Falk JL, et al. (2014) Improving Bi2Te3-based thermoelectric nanowire microstructure via thermal processing Journal of Materials Research. 29: 182-189
Limmer SJ, Yelton WG, Siegal MP, et al. (2012) Electrochemical deposition of Bi 2(Te,Se) 3 nanowire arrays on Si Journal of the Electrochemical Society. 159
Liu Y, Hudak NS, Huber DL, et al. (2011) In situ transmission electron microscopy observation of pulverization of aluminum nanowires and evolution of the thin surface Al2O3 layers during lithiation-delithiation cycles. Nano Letters. 11: 4188-94
Kulp EA, Kothari HM, Limmer SJ, et al. (2009) Electrodeposition of epitaxial magnetite films and ferrihydrite nanoribbons on single-crystal gold Chemistry of Materials. 21: 5022-5031
Kulp EA, Limmer SJ, Bohannan EW, et al. (2007) Electrodeposition of nanometer-thick ceria films by oxidation of cerium(III)-acetate Solid State Ionics. 178: 749-757
Limmer SJ, Kulp EA, Switzer JA. (2006) Epitaxial electrodeposition of ZnO on Au(111) from alkaline solution: exploiting amphoterism in Zn(II). Langmuir : the Acs Journal of Surfaces and Colloids. 22: 10535-9
Kothari HM, Kulp EA, Limmer SJ, et al. (2006) Electrochemical deposition and characterization of Fe3O4 films produced by the reduction of Fe(III)-triethanolamine Journal of Materials Research. 21: 293-301
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