
CO2 Conversion and Utilization
Photocatalytic and Electrochemical Methods and Applications
Zhicheng Zhang(Editor)
Wiley-VCH (Publisher)
1st Edition
Published on 6. September 2023
Book
Hardback
368 pages
978-3-527-35202-9 (ISBN)
Description
systematically summarize the advances of CO2 photo/electro-conversion and utilization, involving the preparation methods and physicochemical properties of various catalytic materials
More details
Edition
1. Auflage
Language
English
Place of publication
Berlin
Germany
Target group
Professional and scholarly
Illustrations
150
50 farbige Abbildungen, 100 s/w Abbildungen
Dimensions
Height: 24.4 cm
Width: 17 cm
Thickness: 2.6 cm
Weight
906 gr
ISBN-13
978-3-527-35202-9 (9783527352029)
Schweitzer Classification
Other editions
Additional editions

Zhicheng Zhang
CO2 Conversion and Utilization
Photocatalytic and Electrochemical Methods and Applications
E-Book
07/2023
1st Edition
Wiley-VCH
€138.99
Available for download

Zhicheng Zhang
CO2 Conversion and Utilization
Photocatalytic and Electrochemical Methods and Applications
E-Book
07/2023
1st Edition
Wiley-VCH
€138.99
Available for download
Person
Zhicheng Zhang is currently a Professor of Tianjin University, China. He obtained his Ph.D. degree from China University of Petroleum (Beijing) in 2012. Then he worked as a postdoctoral researcher at Tsinghua University. In 2014, he worked as a senior research fellow at Nanyang Technological University, Singapore. In 2019, he joined Tianjin University as a full Professor. His research interests focus on the design and synthesis of functional metal-based nanomaterials and their applications in energy conversion and catalysis. To date, he has published more than 120 peer-reviewed papers. Now he is the associate editor of SmartMat, and editorial board member of Nano Research, Chinese Chemical Letters, and Rare Metals, etc.
Content
1 Measurement Systems and Parameters for CO2 Photo/Electro-Conversion
2 CO2 Photo/Electro-Conversion Mechanism
3 Cu-Based Metal Materials for Electrocatalytic CO2 Reduction
4 Cu-Free Metal Materials for Electrocatalytic CO2 Reduction
5 Organic-Inorganic Hybrid Materials for CO2 Photo/Electro-Conversion
6 Metal Organic Framework Materials for CO2 Photo/Electro-Conversion
7 Covalent Organic Framework Materials for CO2 Photo/Electro-Conversion
8 Single/Dual-Atom Catalysts for CO2 Photo/Electro-Conversion
9 Homogeneous Catalytic CO2 Photo/Electro-Conversion
10 High-Entropy Alloys for CO2 Photo/Electro-Conversion
11 Semiconductor Composite Materials for Photocatalytic CO2 Reduction
12 Carbon-based Materials for CO2 Photo/Electro-Conversion
13 Metal-CO2 Batteries: Novel Routes for CO2 Utilization
14 CO2 Conversion into Long-Chain Compounds
15 Perspective and Prospect
2 CO2 Photo/Electro-Conversion Mechanism
3 Cu-Based Metal Materials for Electrocatalytic CO2 Reduction
4 Cu-Free Metal Materials for Electrocatalytic CO2 Reduction
5 Organic-Inorganic Hybrid Materials for CO2 Photo/Electro-Conversion
6 Metal Organic Framework Materials for CO2 Photo/Electro-Conversion
7 Covalent Organic Framework Materials for CO2 Photo/Electro-Conversion
8 Single/Dual-Atom Catalysts for CO2 Photo/Electro-Conversion
9 Homogeneous Catalytic CO2 Photo/Electro-Conversion
10 High-Entropy Alloys for CO2 Photo/Electro-Conversion
11 Semiconductor Composite Materials for Photocatalytic CO2 Reduction
12 Carbon-based Materials for CO2 Photo/Electro-Conversion
13 Metal-CO2 Batteries: Novel Routes for CO2 Utilization
14 CO2 Conversion into Long-Chain Compounds
15 Perspective and Prospect