Wilson Smith

Affiliations: 
1953-1958 Princeton University, Princeton, NJ 
 1958-1964 Johns Hopkins University, Baltimore, MD 
 1964-1990 History University of California, Davis, Davis, CA 
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"Francis Wilson Smith"
Cross-listing: PoliSci Tree

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Publications

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Sassenburg M, Iglesias van Montfort HP, Kolobov N, et al. (2024) Bulk Layering Effects of Ag and Cu for Tandem CO Electrolysis. Chemsuschem. e202401769
Hamilton ST, Kelly M, Smith WA, et al. (2024) Electrolyte-Electrocatalyst Interfacial Effects of Polymeric Materials for Tandem CO Capture and Conversion Elucidated Using In Situ Electrochemical AFM. Acs Applied Materials & Interfaces
Whittaker TN, Fishler Y, Clary JM, et al. (2024) Insights into Electrochemical CO Reduction on Metallic and Oxidized Tin Using Grand-Canonical DFT and In Situ ATR-SEIRA Spectroscopy. Acs Catalysis. 14: 8353-8365
Almajed HM, Kas R, Brimley P, et al. (2024) Closing the Loop: Unexamined Performance Trade-Offs of Integrating Direct Air Capture with (Bi)carbonate Electrolysis. Acs Energy Letters. 9: 2472-2483
Fishler Y, Leick N, Teeter G, et al. (2024) Layered Sn-Au Thin Films for Increased Electrochemical ATR-SEIRAS Enhancement. Acs Applied Materials & Interfaces
Henckel D, Saha P, Intia F, et al. (2024) Elucidation of Critical Catalyst Layer Phenomena toward High Production Rates for the Electrochemical Conversion of CO to Ethylene. Acs Applied Materials & Interfaces
Smith WA. (2023) The International Hahnemannian Association. The Homoeopathic Physician. 19: 379-380
Sassenburg M, Kelly M, Subramanian S, et al. (2022) Zero-Gap Electrochemical CO Reduction Cells: Challenges and Operational Strategies for Prevention of Salt Precipitation. Acs Energy Letters. 8: 321-331
Ripepi D, Izelaar B, van Noordenne DD, et al. (2022) In Situ Study of Hydrogen Permeable Electrodes for Electrolytic Ammonia Synthesis Using Near Ambient Pressure XPS. Acs Catalysis. 12: 13781-13791
Chandrashekar S, van Montfort HI, Bohra D, et al. (2022) Investigating the role of potassium cations during electrochemical CO reduction. Nanoscale
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