Taylor & Francis

Nanomaterials for Direct Alcohol Fuel Cell - Hardback

Edition: 1st Edition
Subjects: Engineering, Environmental science, engineering & technology
ISBN13: 9789814669009
Published: 23 Nov 2016

Format - Hardback
By Yixuan Wang

Usually ready in 7-10 days.

Regular price A$166.40
Sale price A$166.40 Regular price A$208.00

Nanomaterials for Direct Alcohol Fuel Cell - Hardback

Regular price A$166.40
Sale price A$166.40 Regular price A$208.00
Product description

Direct alcohol fuel cells (DAFCs), such as methanol and ethanol ones, are very promising advanced power systems that may considerably reduce dependence on fossil fuels and are, therefore, attracting increased attention worldwide. Nanostructured materials can improve the performance of the cathodes, anodes, and electrolytes of DAFCs. This book focuses on the most recent advances in the science and technology of nanostructured materials for direct alcohol fuel cells, including novel non-noble or low noble metal catalysts deposited on the graphene layer and metal-free doped carbon black for oxygen electroreduction reaction, Sn-based bimetallic and trimetallic nanoparticles for alcohol electro-oxidation reaction, and novel nanomaterials for promoting proton transfer in electrolytes. In addition, the book includes chapters from not only experimentalists but also computational chemists who have worked in the development of advanced power systems for decades.

Illustrated throughout with excellent figures, this multidisciplinary work is not just a reference for researchers in chemistry and materials science, but a handy textbook for advanced undergraduate- and graduate-level students in nanoscience- and nanotechnology-related courses, especially those with an interest in developing novel materials for advanced power systems.

Shipping & Return

Shipping cost is based on weight. Just add products to your cart and use the Shipping Calculator to see the shipping price.

We want you to be 100% satisfied with your purchase. Items can be returned or exchanged within 30 days of delivery.