A Surface Reconstruction Route to High Productivity and Selectivity in CO2 Electroreduction toward C2+ Hydrocarbons
暂无分享,去创建一个
Michael B. Ross | F. P. García de Arquer | R. Quintero‐Bermudez | E. Sargent | P. Yang | D. Sinton | Phil de Luna | Ali Seifitokaldani | C. Dinh | Thomas Burdyny | M. G. Kibria | O. Bushuyev | Rafael Quintero‐Bermudez | A. Seifitokaldani
[1] Chao Wang,et al. Recent Advances in CO2 Reduction Electrocatalysis on Copper , 2018, ACS Energy Letters.
[2] R. Quintero‐Bermudez,et al. Steering post-C–C coupling selectivity enables high efficiency electroreduction of carbon dioxide to multi-carbon alcohols , 2018, Nature Catalysis.
[3] Christine M. Gabardo,et al. CO2 electroreduction to ethylene via hydroxide-mediated copper catalysis at an abrupt interface , 2018, Science.
[4] Genevieve Saur,et al. What Should We Make with CO2 and How Can We Make It , 2018 .
[5] Jens Martin,et al. Investigating the Role of Copper Oxide in Electrochemical CO2 Reduction in Real Time. , 2018, ACS applied materials & interfaces.
[6] Feng Jiao,et al. General Techno-Economic Analysis of CO2 Electrolysis Systems , 2018 .
[7] Michael B. Ross,et al. Catalyst electro-redeposition controls morphology and oxidation state for selective carbon dioxide reduction , 2018, Nature Catalysis.
[8] Haotian Wang,et al. Metal ion cycling of Cu foil for selective C–C coupling in electrochemical CO2 reduction , 2018, Nature Catalysis.
[9] G. Kibria,et al. Joint tuning of nanostructured Cu-oxide morphology and local electrolyte programs high-rate CO2 reduction to C2H4 , 2017 .
[10] Gastón O Larrazábal,et al. Building Blocks for High Performance in Electrocatalytic CO2 Reduction: Materials, Optimization Strategies, and Device Engineering. , 2017, The journal of physical chemistry letters.
[11] E. Sargent,et al. Nanomorphology-Enhanced Gas-Evolution Intensifies CO2 Reduction Electrochemistry , 2017 .
[12] P. Kenis,et al. Nanoporous Copper Films by Additive-Controlled Electrodeposition: CO2 Reduction Catalysis , 2017 .
[13] Marco Favaro,et al. Subsurface Oxygen in Oxide-Derived Copper Electrocatalysts for Carbon Dioxide Reduction. , 2017, The journal of physical chemistry letters.
[14] B. Yeo,et al. Tuning the Selectivity of Carbon Dioxide Electroreduction toward Ethanol on Oxide-Derived CuxZn Catalysts , 2016 .
[15] E. Stach,et al. Highly selective plasma-activated copper catalysts for carbon dioxide reduction to ethylene , 2016, Nature Communications.
[16] Abhijit Dutta,et al. Morphology Matters: Tuning the Product Distribution of CO2 Electroreduction on Oxide-Derived Cu Foam Catalysts , 2016 .
[17] Xun Lu,et al. The effect of electrolyte composition on the electroreduction of CO2 to CO on Ag based gas diffusion electrodes. , 2016, Physical chemistry chemical physics : PCCP.
[18] Yun Huang,et al. Mechanistic Insights into the Enhanced Activity and Stability of Agglomerated Cu Nanocrystals for the Electrochemical Reduction of Carbon Dioxide to n-Propanol. , 2016, The journal of physical chemistry letters.
[19] Paul J. A. Kenis,et al. One-step electrosynthesis of ethylene and ethanol from CO2 in an alkaline electrolyzer , 2016 .
[20] Shoushan Fan,et al. Grain-boundary-dependent CO2 electroreduction activity. , 2015, Journal of the American Chemical Society.
[21] George A. Olah,et al. Electrochemical CO2 Reduction: Recent Advances and Current Trends , 2014 .
[22] G. Mul,et al. Electrochemical CO2 reduction on Cu2O-derived copper nanoparticles: controlling the catalytic selectivity of hydrocarbons. , 2014, Physical chemistry chemical physics : PCCP.
[23] Matthew W. Kanan,et al. Electroreduction of carbon monoxide to liquid fuel on oxide-derived nanocrystalline copper , 2014, Nature.
[24] Jiujun Zhang,et al. A review of catalysts for the electroreduction of carbon dioxide to produce low-carbon fuels. , 2014, Chemical Society reviews.
[25] F. Besenbacher,et al. Experimental and theoretical investigation of the electronic structure of Cu2O and CuO thin films on Cu(110) using x-ray photoelectron and absorption spectroscopy. , 2013, The Journal of chemical physics.
[26] Thomas F. Jaramillo,et al. New insights into the electrochemical reduction of carbon dioxide on metallic copper surfaces , 2012 .
[27] Andrew A. Peterson,et al. Activity Descriptors for CO2 Electroreduction to Methane on Transition-Metal Catalysts , 2012 .
[28] William J. Durand,et al. The importance of surface morphology in controlling the selectivity of polycrystalline copper for CO2 electroreduction. , 2012, Physical chemistry chemical physics : PCCP.
[29] K. Lackner,et al. Sustainable hydrocarbon fuels by recycling CO2 and H2O with renewable or nuclear energy , 2011 .
[30] Andrew A. Peterson,et al. How copper catalyzes the electroreduction of carbon dioxide into hydrocarbon fuels , 2010 .
[31] Rossi,et al. Studies of copper valence states with Cu L3 x-ray-absorption spectroscopy. , 1989, Physical review. B, Condensed matter.