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Modulation Strategies of Cu-based Electrocatalysts for Enhancing Electrocatalytic CO2 Conversion

Modulation Strategies of Cu-based Electrocatalysts for Enhancing Electrocatalytic CO2 Conversion Business & Technology

Modulation Strategies of Cu-based Electrocatalysts for Enhancing Electrocatalytic CO2 Conversion

0 - Default Title
Description
The electrocatalytic reduction of CO¿ into high-value multi-carbon products represents a pathway toward carbon neutrality and sustainable chemical production. The transition from lab-scale studies to industrial-scale implementation helps bridge the gap theory and practice. This book explores the mechanism and functional design of electrocatalysts for CO¿ electroreduction, focusing on bridging the gap between lab-scale research and industrial implementation. It investigates the role of grain boundary structures, oxidation states, and interfacial microenvironments in stabilizing Cu-based catalysts, which improve the production of multi-carbon products. Additionally, this work introduces new approaches to modulate copper oxidation states, leading to improved catalytic performance. By integrating fundamental insights with industrial feasibility, this book offers a guide for researchers and engineers to developing next-generation CO¿ electrolysis technologies, thereby contributing to carbon-neutral chemical manufacturing and sustainable energy solutions. In addition, this book: - Bridges between lab-scale studies and industrial implementation, offering guidance for actual applications - Provides information on catalysts’ design and modulation to help improve their selectivity and stability - Serves as a resource for professionals working towards sustainable and carbon-neutral chemical manufacturing
Product details
Number of Pages:
188
Release Date:
2025-07-08
Publication Date:
2025-07-08
Publisher:
Springer Nature Switzerland
Languages:
Original: English
ISBN10:
3031980557
ISBN13:
9783031980558
GPSR Manufacturer Reference:
Weight:
537 g
Height:
173 cm
Width:
246 cm
Thickness:
16 cm
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