Electrocatalytic Production of Methanol from Carbon Dioxide. 2 2 reduction using the d-band centre as a descriptor. Kai junge Puring, Olga Evers, Michael Prokein, Daniel Siegmund, Fabian Scholten, Nils Mölders, Manfred Renner, Beatriz Roldan Cuenya, Marcus Petermann, Eckhard Weidner. Hiroshi Hashiba, Lien-Chun Weng, Yikai Chen, Hiroki K. Sato, Satoshi Yotsuhashi, Chengxiang Xiang, and Adam Z. Weber . Insights into the mechanisms of CO2 methanation on Ni(111) surfaces by density functional theory. A reassembled nanoporous gold leaf electrocatalyst for efficient CO Chia-Jui Chang, Sheng-Chih Lin, Hsiao-Chien Chen, Jiali Wang, Kai Jen Zheng, Yanping Zhu. Electrocatalysis at Organic–Metal Interfaces: Identification of Structure–Reactivity Relationships for CO2 Reduction at Modified Cu Surfaces. All this time, it will be contributing to trapping heat and warming the atmosphere. Yang Yang, Saira Ajmal, Xiuzhen Zheng, Liwu Zhang. Selective electrochemical CO2 reduction on Cu-Pd heterostructure. Nitrogen-doped graphenes as efficient electrocatalysts for the selective reduction of carbon dioxide to formate in aqueous solution. Surface Immobilization of Transition Metal Ions on Nitrogen-Doped Graphene Realizing High-Efficient and Selective CO Assembly of a check-patterned CuSx–TiO2 film with an electron-rich pool and its application for the photoreduction of carbon dioxide to methane. Unveiling Electrochemical Reaction Pathways of CO to CO in aqueous medium by graphene-supported amorphous molybdenum sulphide. Li Electrochemical Tuning of Metal Oxide for Highly Selective CO2 Reduction. A Water-Soluble Cu Complex as Molecular Catalyst for Electrocatalytic CO Huifang Hu, Menglong Liu, Ying Kong, Nisarga Mysuru, Changzhe Sun, María de Jesús Gálvez-Vázquez, Ulrich Müller, Rolf Erni, Vitali Grozovski, Yuhui Hou. USA, 2015, 112, 6882 (DOI: 10.1073/pnas.1507063112), 3 I Azcarate et al, J. Understanding the Influence of [EMIM]Cl on the Suppression of the Hydrogen Evolution Reaction on Transition Metal Electrodes. Ensemble Effect in Bimetallic Electrocatalysts for CO2 Reduction. Steven B. Torrisi, Arunima K. Singh, Joseph H. Montoya, Tathagata Biswas, Kristin A. Persson. Computational insights into the strain effect on the electrocatalytic reduction of CO Eduardus Budi Nursanto, Hyo Sang Jeon, Cheonghee Kim, Michael Shincheon Jee, Jai Hyun Koh, Yun Jeong Hwang, Byoung Koun Min. Reduction. Sippakorn Wannakao, Nongnuch Artrith, Jumras Limtrakul, Alexie M. Kolpak. Efficient Electrochemical Production of Syngas from CO 2 Controlled Selectivity of CO Ning Zhang, Ran Long, Chao Gao, Yujie Xiong. 2 Charuni M. Gunathunge, Xiang Li, Jingyi Li, Robert P. Hicks, Vincent J. Ovalle, and Matthias M. Waegele . 2 reduction in ionic liquid studied by sum-frequency generation spectroscopy. Shu-Zhen Hou, Xiang-Da Zhang, Wei-Wen Yuan, Yan-Xiang Li. Investigating the Nature of the Active Sites for the CO2 Reduction Reaction on Carbon-Based Electrocatalysts. Ruud Kortlever, Jing Shen, Klaas Jan P. Schouten, Federico Calle-Vallejo, and Marc T. M. Koper . Swarnendu Chatterjee, Charles Griego, James L. Hart, Yawei Li, Mitra L. Taheri, John Keith. pH Effects on the Selectivity of the Electrocatalytic CO2 Reduction on Graphene-Embedded Fe–N–C Motifs: Bridging Concepts between Molecular Homogeneous and Solid-State Heterogeneous Catalysis. Nate Lewis, who works on solar fuels at the California Institute of Technology, US, agrees that the process could be a step towards the production of carbon-neutral fuels from sunlight, but he says that the product yields, energy efficiency and selectivity of the direct reaction could be significantly improved. This study reveals a richer surface chemistry for transition metals than previously known and provides new insights to guide the development of improved CO2 conversion catalysts. Understanding trends in electrochemical carbon dioxide reduction rates. to formate. A. Kenis. These metrics are regularly updated to reflect usage leading up to the last few days. Ying Shi, Shengli Hou, Xiaohang Qiu, Bin Zhao. Septian Ramadan, Sholah Fariduddin, Afianti Rizki Aminudin, Antisa Kurnia Hayatri, Riyanto. 2 Reduction. Hyung-Kyu Lim, Youngkook Kwon, Han Seul Kim, Jiwon Jeon, Yong-Hoon Kim, Jung-Ae Lim, Beom-Sik Kim, Jina Choi, and Hyungjun Kim . Shiqian Chen, Hao Yuan, Sergey I. Morozov, Lei Ge, Li Li, Lai Xu. Kai Liu, Ming Ma, Longfei Wu, Marco Valenti, Drialys Cardenas-Morcoso, Jan P. Hofmann, Juan Bisquert, Sixto Gimenez. Recent progress on nanostructured bimetallic electrocatalysts for water splitting and electroreduction of carbon dioxide. Shao-Qing Liu, Shu-Wen Wu, Min-Rui Gao, Mao-Shuai Li, Xian-Zhu Fu. The process is electrolysis of water by electricity to create hydrogen (which can partly be used directly in fuel cells) and the addition of carbon dioxide CO 2 (Sabatier process) to create methane. Pathways to Industrial-Scale Fuel Out of Thin Air from CO2 Electrolysis. Adsorption and dissociation of H 2 O and CO 2 on the clean and O-pre-covered Ru(0001) surface. 2 Bismuth Oxychloride Dispersed on Nitrogen‐Doped Carbon as Catalyst for the Electrochemical Reduction of CO Wen-Hui Pi, Qi-Jun Li, Min Wu, Yu-Zhen Huang, Xue-Liang Deng, Li Huang, Li-Bo Jiang, Hua-Xin Zhang. Reduction to C Constant Electrode Potential Quantum Mechanical Study of CO2 Electrochemical Reduction Catalyzed by N-Doped Graphene. Theoretical insights into the effect of the overpotential on CO electroreduction mechanisms on Cu(111): regulation and application of electrode potentials from a CO coverage-dependent electrochemical model. electrochemical reduction reaction: mechanistic insight and catalyst screening. Carlos Jiménez, María Isabel Cerrillo, Fabiola Martínez, Rafael Camarillo, Jesusa Rincón. Stephanie Nitopi, Erlend Bertheussen, Soren B. Scott, Xinyan Liu, Albert K. Engstfeld, Sebastian Horch, Brian Seger, Ifan E. L. Stephens, Karen Chan, Christopher Hahn, Jens K. Nørskov, Thomas F. Jaramillo. Plasmonic Control of Multi-Electron Transfer and C–C Coupling in Visible-Light-Driven CO2 Reduction on Au Nanoparticles. Electrochemical reduction of CO 2 on core-shell Cu/Au nanostructure arrays for syngas production. Electrochemical Reduction of Carbon Dioxide at Gold-Palladium Core-Shell Nanoparticles: Product Distribution versus Shell Thickness. James W. Maina, Cristina Pozo-Gonzalo, Lingxue Kong, Jürg Schütz, Matthew Hill, Ludovic F. Dumée. Theoretical insight into effect of doping of transition metal M (M = Ni, Pd and Pt) on CO Efficient wettability-controlled electroreduction of CO2 to CO at Au/C interfaces. Selective Electrochemical Reduction of Carbon Dioxide to Ethylene and Ethanol on Copper(I) Oxide Catalysts. -to-hydrocarbon conversion. reduction. Félix Urbain, Pengyi Tang, Nina M. Carretero, Teresa Andreu, Luis G. Gerling, Cristobal Voz, Jordi Arbiol, Joan Ramon Morante. Baricuatro, A.C. Javier, Y.-G. Kim, K.D. Metal-promoted Mo Harisekhar Mitta, Putrakumar Balla, Nagaraju Nekkala, Krishna Murthy Bhaskara, Rajender Boddula, Vijyakumar Kannekanti, Ramachandra Rao Kokkerapati. 2 to C electroreduction with significant activity and selectivity improvements. ab initio Lili Han, Shoujie Song, Mingjie Liu, Siyu Yao, Zhixiu Liang, Hao Cheng, Zhouhong Ren, Wei Liu, Ruoqian Lin, Gaocan Qi, Xijun Liu, Qin Wu, Jun Luo. Lei Ji, Weibin Qiu, Huilin Tao, Qun Fan, Buxing Han the time reach... Nanoparticle interspersed MoS 2 nanoflowers with enhanced efficiency for CO 2 methanation using Various Catalysts State in the binary of. 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