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Electrocatalysis in Balancing the Natural Carbon Cycle
Explore the potential of electrocatalysis to balance an off-kilter natural carbon cycle
In Electrocatalysis in Balancing the Natural Carbon Cycle, accomplished researcher and author, Yaobing Wang, delivers a focused examination of why and how to solve the unbalance of the natural carbon cycle with electrocatalysis. The book introduces the natural carbon cycle and analyzes current bottlenecks being caused by human activities. It then examines fundamental topics, including CO2 reduction, water splitting, and small molecule (alcohols and acid) oxidation to prove the feasibility and advantages of using electrocatalysis to tune the unbalanced carbon cycle.
Preface
Part I Introduction
Introduction
Part II Natural Carbon Cycle
Natural Carbon Cycle and Anthropogenic Carbon Cycle
Part III Electrochemical Catalysis Process
Electrochemical Catalysis Processes
Part IV Water Splitting and Devices
Water Splitting Basic Parameter/Others
H2O Oxidation
H2O Reduction and Water Splitting Electrocatalytic Cell
Part V H2 Oxidation/O2 Reduction and Device
Introduction
Hydrogen Oxidation Reaction (HOR)
Oxygen Reduction Reaction (ORR)
Fuel Cell and Metal-Air Battery
C1 Molecule Oxidation
C2 Molecule Oxidation
Fuel Cell Devices
Part VII CO2 Reduction and Device
Introduction
Electrocatalysts-1
Electrocatalysts-2
Devices
Part VIII Computations-Guided Electrocatalysis
Insights into the Catalytic Process
Computational Electrocatalysis
Theory-Guided Rational Design
DFT Applications in Selected Electrocatalytic Systems
Part IX Potential of In Situ Characterizations for Electrocatalysis
In Situ Characterization Techniques
In Situ Characterizations in Electrocatalytic Cycle
Part X Electrochemical Catalytic Carbon Cycle
Electrochemical CO2 Reduction to Fuels
Electrochemical Fuel Oxidation
Evaluation and Management of ECC