Electrochemistry of Porous Materials
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76 440 Ft
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Product details:
- Edition number 1
- Publisher CRC Press
- Date of Publication 10 December 2009
- ISBN 9781439806333
- Binding Hardback
- No. of pages338 pages
- Size 234x156 mm
- Weight 800 g
- Language English
- Illustrations 220 Illustrations, black & white; 12 Illustrations, color; 11 Tables, black & white 0
Categories
Short description:
Antonio Doménech holds a Ph.D. in chemistry (University of Valencia, 1989) and is currently professor in the Department of Analytical Chemistry, University of Valencia, Spain. His research is focused on supramolecular electrochemistry, electrochemistry of porous nanostructured materials, and electroanalytical methods applied to conservation and restoration of cultural heritage, as well as on educational problems in teaching of science. He has published more than 150 articles in scientific journals and several monographs, among them, Supramolecular Chemistry of Anions and Electrochemical Methods in Archeometry, Conservation and Restoration. Dr. Domenech received the "Demetrio Ribes" award (Valencian Regional Government) in 2006.
MoreLong description:
Porous Materials and Electrochemistry. Electrochemical Processes Involving Porous Materials. Electrocatalysis. Electrochemistry of Aluminosilicates. Electrochemistry of Metal-Organic Frameworks. Electrochemistry of Porous Oxides and Related Materials. Electrochemistry of Porous Carbons and Nanotubes. Electrochemistry of Porous Polymers and Hybrid Materials. Electrochemical Sensing via Porous Materials. Supercapacitors, Batteries, Fuel Cells, and Related Applications. Magnetoelectrochemistry and Photoelectrochemistry of Porous Materials. Microporous Materials in Electrosynthesis and Environmental Remediation. References. Index.
? 2010 by Taylor and Francis Group, LLC More
Table of Contents:
Porous materials have attracted considerable attention in the last decades because of the wide variety of scientific and technological applications, such as catalysis, shape
- and size
-selective absorption and adsorption, gas storage, and electrode materials. This book focuses on generalized theoretical modeling and describes redox processes for different porous materials, assessing their electrochemical applications. To present a focused analysis, the author limits discussion to a selection of important porous materials considered relatively homogeneous, from an electrochemical point of view. These include porous silicates and aluminosilicates, metal oxides, polyoxometalates and related materials, metal
-organic frameworks, porous carbons, carbon nanotubes and fullerenes, and several hybrid materials.