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| name = Surface Electrochemistry: A Molecular Level Approach
| name = Surface Electrochemistry: A Molecular Level Approach
| image = Surface Electrochemistry: A Molecular Level Approach 771.jpg
| image = Surface Electrochemistry: A Molecular Level Approach 771.jpg
| author = [[John M Bockris]]
| author = [[John M Bockris]], [[Shahed U M Khan]]
| language = English
| subject = Electrochemistry
| published = 1993
| published = 1993
| publisher = [[Springer]]
| publisher = [[Springer]]
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This work is an advanced version of the authors' landmark undergraduate text, <em>Modern Electrochemistry</em>. It presents the frontiers of research in photoelectrochemistry, bioelectrochemistry, the electrochemistry of cleaner environments, and other areas to help the professional electrochemist design cleaner, more economical sources of electricity.
'''''Surface Electrochemistry: A Molecular Level Approach''''' is a 1993 advanced treatise by [[John M Bockris|John O'M. Bockris]] and [[Shahed U M Khan|Shahed U. M. Khan]], published by Plenum Press (Springer). It is a graduate/research-level companion to the authors' widely used undergraduate text ''Modern Electrochemistry''.
 
==Overview==
 
The book gives a molecular-level account of electrochemical processes at surfaces, surveying research frontiers in photoelectrochemistry, bioelectrochemistry, and the electrochemistry of cleaner energy and environmental technologies. It is aimed at helping professional electrochemists design more efficient and economical electrochemical sources of energy. At more than a thousand pages, it is a standard, heavily cited reference in the field.
 
==About the authors==
 
John O'M. Bockris (1923–2013) was a prominent electrochemist and long-time professor (University of Pennsylvania, Texas A&M), author of foundational textbooks in electrochemistry; in his later career he became involved in controversial cold-fusion and low-energy transmutation research. Shahed U. M. Khan is an electrochemist and frequent co-author, noted for work in photoelectrochemistry.
 
==Publication details==
 
* '''Authors:''' [[John M Bockris|John O'M. Bockris]] and [[Shahed U M Khan|Shahed U. M. Khan]]
* '''Publisher:''' Plenum Press / [[Springer]]
* '''Published:''' 1993
* '''Pages:''' 1046
* '''ISBN:''' 0306443392


==Links to Purchase Book==
==Links to Purchase Book==


* [[http://www.amazon.com/Surface-Electrochemistry-Molecular-Level-Approach/dp/0306442981/ref=ed_oe_h Surface Electrochemistry: A Molecular Level Approach]][[Category:Book]]
* [https://www.amazon.com/Surface-Electrochemistry-Molecular-Level-Approach/dp/0306443392 Surface Electrochemistry: A Molecular Level Approach] (Amazon)
 
[[Category:Book|surface electrochemistry molecular level approach]]

Latest revision as of 12:30, 16 July 2026

Surface Electrochemistry: A Molecular Level Approach
AuthorJohn M Bockris, Shahed U M Khan
LanguageEnglish
SubjectElectrochemistry
Published1993
PublisherSpringer
Pages1046
ISBN0306443392

Surface Electrochemistry: A Molecular Level Approach is a 1993 advanced treatise by John O'M. Bockris and Shahed U. M. Khan, published by Plenum Press (Springer). It is a graduate/research-level companion to the authors' widely used undergraduate text Modern Electrochemistry.

Overview

The book gives a molecular-level account of electrochemical processes at surfaces, surveying research frontiers in photoelectrochemistry, bioelectrochemistry, and the electrochemistry of cleaner energy and environmental technologies. It is aimed at helping professional electrochemists design more efficient and economical electrochemical sources of energy. At more than a thousand pages, it is a standard, heavily cited reference in the field.

About the authors

John O'M. Bockris (1923–2013) was a prominent electrochemist and long-time professor (University of Pennsylvania, Texas A&M), author of foundational textbooks in electrochemistry; in his later career he became involved in controversial cold-fusion and low-energy transmutation research. Shahed U. M. Khan is an electrochemist and frequent co-author, noted for work in photoelectrochemistry.

Publication details

Links to Purchase Book