Christopher N. Chervin, Ph.D.

Affiliations: 
2000-2005 chemistry University of California, Davis, Davis, CA 
 2010- Chemistry Naval Research Laboratory, Washington, DC, United States 
Area:
Material Chemistry, nanomaterials
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"Christopher Chervin"
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Susan Kauzlarich grad student 2005 UC Davis
 (Aerogel and xerogel synthesis of solid oxide fuel cell materials by an epoxide assisted sol -gel method: Investigating high surface area ceramics for cathode applications.)
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Publications

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Chervin CN, Parker JF, Nelson ES, et al. (2016) CAD/CAM-designed 3D-printed electroanalytical cell for the evaluation of nanostructured gas-diffusion electrodes. Nanotechnology. 27: 174002
Osofsky MS, Krowne CM, Charipar KM, et al. (2016) Disordered RuO2 exhibits two dimensional, low-mobility transport and a metal-insulator transition. Scientific Reports. 6: 21836
Parker JF, Pala IR, Chervin CN, et al. (2016) Minimizing shape change at Zn sponge anodes in rechargeable Ni-Zn cells: Impact of electrolyte formulation Journal of the Electrochemical Society. 163: A351-A355
Chervin CN, Ko JS, Miller BW, et al. (2015) Defective by design: Vanadium-substituted iron oxide nanoarchitectures as cation-insertion hosts for electrochemical charge storage Journal of Materials Chemistry A. 3: 12059-12068
Owrutsky JC, Long JP, Chervin CN, et al. (2015) The effect of disorder on the optical constants of nanoscale RuO2 Thin Solid Films. 589: 344-350
Parker JF, Nelson ES, Wattendorf MD, et al. (2014) Retaining the 3D framework of zinc sponge anodes upon deep discharge in Zn-air cells. Acs Applied Materials & Interfaces. 6: 19471-6
Parker JF, Chervin CN, Nelson ES, et al. (2014) Wiring zinc in three dimensions re-writes battery performance - Dendrite-free cycling Energy and Environmental Science. 7: 1117-1124
Sassin MB, Chervin CN, Rolison DR, et al. (2013) Redox deposition of nanoscale metal oxides on carbon for next-generation electrochemical capacitors. Accounts of Chemical Research. 46: 1062-74
Chervin CN, Wattendorf MJ, Long JW, et al. (2013) Carbon nanofoam-based cathodes for Li-O2 batteries: Correlation of pore-solid architecture and electrochemical performance Journal of the Electrochemical Society. 160: A1510-A1516
Long JW, Chervin CN, Kucko NW, et al. (2013) Dual-function air cathode for metal-air batteries with pulse-power capability Advanced Energy Materials. 3: 584-588
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