Modulation Strategies Of Cu Based Electrocatalysts For Enhancing Electrocatalytic Co2 Conversion

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Modulation Strategies Of Cu Based Electrocatalysts For Enhancing Electrocatalytic Co2 Conversion
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Author : Lei Wang
language : en
Publisher: Springer Nature
Release Date : 2025-07-07
Modulation Strategies Of Cu Based Electrocatalysts For Enhancing Electrocatalytic Co2 Conversion written by Lei Wang and has been published by Springer Nature this book supported file pdf, txt, epub, kindle and other format this book has been release on 2025-07-07 with Science categories.
The electrocatalytic reduction of CO2 into high-value multi-carbon products represents a crucial pathway toward achieving carbon neutrality and sustainable chemical production. The transition from lab-scale studies to industrial-scale implementation is imperative to bridge the gap between fundamental mechanistic insights and practical applications. This book explores the mechanistic understanding and functional design of electrocatalysts for CO2 electroreduction, focusing on bridging the gap between lab-scale research and industrial-scale implementation. It systematically investigates the role of grain boundary structures, oxidation states, and interfacial microenvironments in stabilizing Cu-based catalysts, thereby enhancing the selective production of multi-carbon products. By integrating oxidation and alloying strategies, this work introduces new approaches to modulate copper oxidation states, leading to improved catalytic performance. Advanced characterization techniques, including in situ multimodal spectroscopy, provide insights into the electrochemical stability of Cuδ+ species and their impact on reaction pathways. Beyond catalyst design, this book extends the discussion to CO2 electrolyzer configurations, emphasizing membrane electrode assemblies and gas diffusion electrode engineering for scalable applications. The introduction of functionalized carbon black to modulate the interfacial environment, effectively suppresses the hydrogen evolution reaction, stabilizing active Cuδ+ species and promoting ethylene production with high Faradaic efficiency. By integrating fundamental insights with industrial feasibility, this book offers a comprehensive guide for researchers and engineers developing next-generation CO2 electrolysis technologies, contributing to carbon-neutral chemical manufacturing and sustainable energy solutions.
Solar To Chemical Conversion
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Author : Hongqi Sun
language : en
Publisher: John Wiley & Sons
Release Date : 2021-06-28
Solar To Chemical Conversion written by Hongqi Sun and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-06-28 with Science categories.
This comprehensive book systematically covers the fundamentals in solar energy conversion to chemicals, either fuels or chemical products. It includes natural photosynthesis with emphasis on artificial processes for solar energy conversion and utilization. The chemical processes of solar energy conversion via homogeneous and/or heterogeneous photocatalysis has been described with the mechanistic insights. It also consists of reaction systems toward a variety of applications, such as water splitting for hydrogen or oxygen evolution, photocatalytic CO2 reduction to fuels, and light driven N2 fixation, etc. This unique book offers the readers a broad view of solar energy utilization based on chemical processes and their perspectives for future sustainability.
Metal Electrodeposition
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Author : Magdalena Nuñez
language : en
Publisher: Nova Publishers
Release Date : 2005
Metal Electrodeposition written by Magdalena Nuñez and has been published by Nova Publishers this book supported file pdf, txt, epub, kindle and other format this book has been release on 2005 with Science categories.
Electrochemistry is the branch of chemistry that deals with the chemical action of electricity and the production of electricity by chemical reactions. In a world short of energy sources yet long on energy use, electrochemistry is a critical component of the mix necessary to keep the world economies growing. Electrochemistry is involved with such important applications as batteries, fuel cells, corrosion studies, hydrogen energy conversion, and bioelectricity. Research on electrolytes, cells, and electrodes is within the scope of this old but extremely dynamic field. This book details advances in metal electrodeposition.
Electrode Materials For Energy Storage And Conversion
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Author : Mesfin A. Kebede
language : en
Publisher: CRC Press
Release Date : 2021-11-16
Electrode Materials For Energy Storage And Conversion written by Mesfin A. Kebede and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-11-16 with Science categories.
This book provides a comprehensive overview of the latest developments and materials used in electrochemical energy storage and conversion devices, including lithium-ion batteries, sodium-ion batteries, zinc-ion batteries, supercapacitors and conversion materials for solar and fuel cells. Chapters introduce the technologies behind each material, in addition to the fundamental principles of the devices, and their wider impact and contribution to the field. This book will be an ideal reference for researchers and individuals working in industries based on energy storage and conversion technologies across physics, chemistry and engineering. FEATURES Edited by established authorities, with chapter contributions from subject-area specialists Provides a comprehensive review of the field Up to date with the latest developments and research Editors Dr. Mesfin A. Kebede obtained his PhD in Metallurgical Engineering from Inha University, South Korea. He is now a principal research scientist at Energy Centre of Council for Scientific and Industrial Research (CSIR), South Africa. He was previously an assistant professor in the Department of Applied Physics and Materials Science at Hawassa University, Ethiopia. His extensive research experience covers the use of electrode materials for energy storage and energy conversion. Prof. Fabian I. Ezema is a professor at the University of Nigeria, Nsukka. He obtained his PhD in Physics and Astronomy from University of Nigeria, Nsukka. His research focuses on several areas of materials science with an emphasis on energy applications, specifically electrode materials for energy conversion and storage.
Nanomaterials Synthesis Properties And Applications
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Author : Nitin K. Puri
language : en
Publisher: I K International Pvt Ltd
Release Date : 2021-09-15
Nanomaterials Synthesis Properties And Applications written by Nitin K. Puri and has been published by I K International Pvt Ltd this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-09-15 with Science categories.
“Nanomaterials – Synthesis, Properties and Applications” is a book for beginners to explore the enticing world of nanoscience and nanotechnology. This book is primarily intended for students pursuing courses in nanoscience and nanotechnology at undergraduate and post-graduate level. Since, nanoscience and nanotechnology are an interdisciplinary science which needs students from various backgrounds such as Physics, Chemistry, Biology and Engineering to extract it to its fullest. This book has a practical and functional approach and it gives an exhaustive treatment to the basics as well as applications of nanoscience and nanotechnology. Hence, these students will develop a zest for reconnoitring this field by reading this book. With its up-to-date coverage, this book will serve as a ready reference in the field of nanoscience and nanotechnology.
Plasma Catalysis
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Author : Annemie Bogaerts
language : en
Publisher: MDPI
Release Date : 2019-04-02
Plasma Catalysis written by Annemie Bogaerts and has been published by MDPI this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-04-02 with Technology & Engineering categories.
Plasma catalysis is gaining increasing interest for various gas conversion applications, such as CO2 conversion into value-added chemicals and fuels, N2 fixation for the synthesis of NH3 or NOx, methane conversion into higher hydrocarbons or oxygenates. It is also widely used for air pollution control (e.g., VOC remediation). Plasma catalysis allows thermodynamically difficult reactions to proceed at ambient pressure and temperature, due to activation of the gas molecules by energetic electrons created in the plasma. However, plasma is very reactive but not selective, and thus a catalyst is needed to improve the selectivity. In spite of the growing interest in plasma catalysis, the underlying mechanisms of the (possible) synergy between plasma and catalyst are not yet fully understood. Indeed, plasma catalysis is quite complicated, as the plasma will affect the catalyst and vice versa. Moreover, due to the reactive plasma environment, the most suitable catalysts will probably be different from thermal catalysts. More research is needed to better understand the plasma–catalyst interactions, in order to further improve the applications.
Atomic And Nano Scale Materials For Advanced Energy Conversion 2 Volumes
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Author : Zongyou Yin
language : en
Publisher: John Wiley & Sons
Release Date : 2022-04-18
Atomic And Nano Scale Materials For Advanced Energy Conversion 2 Volumes written by Zongyou Yin and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-04-18 with Technology & Engineering categories.
Atomic and Nano Scale Materials for Advanced Energy Conversion Discover the latest advancements in energy conversion technologies used to develop modern sustainable energy techniques In Atomic and Nano Scale Materials for Advanced Energy Conversion, expert interdisciplinary researcher Dr. Zongyou Yin delivers a comprehensive overview of nano-to-atomic scale materials science, the development of advanced electrochemical, photochemical, photoelectrochemical, and photovoltaic energy conversion strategies, and the applications for sustainable water splitting and other technologies. The book offers readers cutting-edge information of two-dimensional nano, mixed-dimensional nano, nano rare earth, clusters, and single atoms. It constructively evaluates emerging nano-to-atomic scale energy conversion technologies for academic research and development (R&D) researchers and industrial technique consultants and engineers. The author sets out a systematic analysis of recent energy-conversion science, covering topics like adaptable manufacturing of Van der Waals heterojunctions, mixed-dimensional junctions, tandem structures, and superlattices. He also discusses function-oriented engineering in polymorphic phases, photon absorption, excitons-charges conversion, non-noble plasmonics, and solid-liquid-gas interactions. Readers will also benefit from: A thorough introduction to emerging nanomaterials for energy conversion, including electrochemical, photochemical, photoelectrochemical, and photovoltaic energy conversion An exploration of clusters for energy conversion, including electrochemical, photochemical, and photoelectrochemical clusters Practical discussions of single atoms for energy conversion in electrochemical, photochemical, and photoelectrochemical energy conversion technologies A thorough analysis of future perspectives and directions in advanced energy conversion technology Perfect for materials scientists, photochemists, electrochemists, and inorganic chemists, Atomic and Nano Scale Materials for Advanced Energy Conversion is also a must-read resource for catalytic chemists interested in the intersection of advanced chemistry and physics in energy conversion technologies.
Methods For Electrocatalysis
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Author : Inamuddin
language : en
Publisher: Springer
Release Date : 2021-08-26
Methods For Electrocatalysis written by Inamuddin and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-08-26 with Technology & Engineering categories.
This book explores key parameters, properties and fundamental concepts of electrocatalysis. It also discusses the engineering strategies, current applications in fuel-cells, water-splitting, metal-ion batteries, and fuel generation. This book elucidates entire category viewpoints together with industrial applications. Therefore, all the sections of this book emphasize the recent advances of different types of electrocatalysts, current challenges, and state-of-the-art studies through detailed reviews. This book is the result of commitments by numerous experts in the field from various backgrounds and expertise and appeals to industrialists, researchers, scientists and in addition understudies from various teaches.
Nanoscience Editor S Pick 2024
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Author : Zoe Pikramenou
language : en
Publisher: Frontiers Media SA
Release Date : 2024-12-18
Nanoscience Editor S Pick 2024 written by Zoe Pikramenou and has been published by Frontiers Media SA this book supported file pdf, txt, epub, kindle and other format this book has been release on 2024-12-18 with Science categories.
We are pleased to introduce the collection Frontiers in Chemistry – Nanoscience Editor’s Pick 2024. This collection showcases most well-received spontaneous articles from the past couple of years, and have been specially handpicked by our Chief Editor. The work presented here highlights the broad diversity of research performed across the section, and aims to put a spotlight on the main areas of interest. All research presented here displays strong advances in theory, experiment and methodology with applications to compelling problems.
Designing Active Electro Catalysts And Reactors For Electrochemical Co2 Transformation
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Author : Taewoo Kim
language : en
Publisher:
Release Date : 2022
Designing Active Electro Catalysts And Reactors For Electrochemical Co2 Transformation written by Taewoo Kim and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022 with categories.
Electrochemical CO2 conversion into value-added chemical feedstocks, if powered with renewable electricity, is a promising path to approach carbon neutrality. However, developing active and selective catalysts is necessary to enable energy efficient conversion. In this thesis, I provide strategies to design active electrocatalysts with enhanced selectivity for CO2 electrolysis via tuning of the local reaction environment. First, I show that modulating the surface strain of a model Cu (001) catalyst epitaxially grown on a single-crystal Si substrate results in an increase of the Cu 3d band center position. This change in the electronic structure causes a suppression of the CO production pathway, increasing selectivity to multi-carbon products. I demonstrate that multi-carbon products can be further selected for by an operando restructuring of the micro- and nanoscale morphology of Cu-based catalysts. An electrochemically reduced Cu(OH)2 nanowire catalyst enhances the selectivity of multi-carbon products at moderate electrolysis potentials where a hierarchical morphology evolves. A final level is the tuning of the chemical state of the catalyst surface. By switching the initial surface oxidation state of tin oxide catalysts to be SnII-rich, the selectivity and energy efficiency of formate generation are promoted, offering a possible nearest-term path to carbon-negative CO2 electrolysis. Optimizing electrolyzer design is also crucial to facilitate mass transport of CO2 to reach industrial relevance. The importance of the mass transport of CO2 to enhance overall activity is also demonstrated by controlling flow rate of partially concentrated CO2 stream. These findings reveal the importance of surface strain, morphology and chemical state on designing efficient CO2 catalysts, providing fundamental guidelines and direction toward carbon neutral CO2 conversion.