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Electrochemical science for a sustai...
~
Uosaki, Kohei.
Electrochemical science for a sustainable society = a tribute to John O'M Bockris /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Electrochemical science for a sustainable society/ edited by Kohei Uosaki.
Reminder of title:
a tribute to John O'M Bockris /
other author:
Uosaki, Kohei.
Published:
Cham :Springer International Publishing : : 2017.,
Description:
vii, 259 p. :ill., digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Electrochemistry. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-57310-6
ISBN:
9783319573106
Electrochemical science for a sustainable society = a tribute to John O'M Bockris /
Electrochemical science for a sustainable society
a tribute to John O'M Bockris /[electronic resource] :edited by Kohei Uosaki. - Cham :Springer International Publishing :2017. - vii, 259 p. :ill., digital ;24 cm.
Molten salts and Ionic liquids -- Double layer and SAM -- Kinetics, single crystal electrode -- Hydrogen electrode -- Electrocatalysis -- Theoretical Electrochemistry -- Novel in situ techniques -- Bioelectrochemistry -- Fuel Cells -- Corrosion -- Solar-fuel (hydrogen, methanol, etc.) -- Batteries.
This book honors Professor. John O'M. Bockris, presenting authoritative reviews on some of the subjects to which he made significant contributions - i.e., electrocatalysis, fuel cells, electrochemical theory, electrochemistry of single crystals, in situ techniques, rechargeable batteries, passivity, and solar-fuels - and revealing the roles of electrochemical science and technology in achieving a sustainable society. Electrochemistry has long been an object of study and is now growing in importance, not only because of its fundamental scientific interest but also because of the central role it is expected to play in a future sustainable society. Professor John O'M. Bockris contributed greatly to various aspects of fundamental and applied electrochemistry - such as the structure of the double layer, kinetics and mechanism of the electrochemistry of hydrogen and oxygen, electrocatalysis, adsorption and electrochemical oxidation of small organic molecules, fuel cells, electrocrystallization, theoretical electrochemistry, new methods, photoelectrochemistry, bioelectrochemistry, corrosion and passivity, hydrogen in metals, ionic solutions and ionic liquids, and molten silicates and glasses, as well as socio-economic issues such as the hydrogen economy - for over half a century from 1945 until his retirement in 1997.
ISBN: 9783319573106
Standard No.: 10.1007/978-3-319-57310-6doiSubjects--Topical Terms:
591514
Electrochemistry.
LC Class. No.: QD553
Dewey Class. No.: 541.37
Electrochemical science for a sustainable society = a tribute to John O'M Bockris /
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Molten salts and Ionic liquids -- Double layer and SAM -- Kinetics, single crystal electrode -- Hydrogen electrode -- Electrocatalysis -- Theoretical Electrochemistry -- Novel in situ techniques -- Bioelectrochemistry -- Fuel Cells -- Corrosion -- Solar-fuel (hydrogen, methanol, etc.) -- Batteries.
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This book honors Professor. John O'M. Bockris, presenting authoritative reviews on some of the subjects to which he made significant contributions - i.e., electrocatalysis, fuel cells, electrochemical theory, electrochemistry of single crystals, in situ techniques, rechargeable batteries, passivity, and solar-fuels - and revealing the roles of electrochemical science and technology in achieving a sustainable society. Electrochemistry has long been an object of study and is now growing in importance, not only because of its fundamental scientific interest but also because of the central role it is expected to play in a future sustainable society. Professor John O'M. Bockris contributed greatly to various aspects of fundamental and applied electrochemistry - such as the structure of the double layer, kinetics and mechanism of the electrochemistry of hydrogen and oxygen, electrocatalysis, adsorption and electrochemical oxidation of small organic molecules, fuel cells, electrocrystallization, theoretical electrochemistry, new methods, photoelectrochemistry, bioelectrochemistry, corrosion and passivity, hydrogen in metals, ionic solutions and ionic liquids, and molten silicates and glasses, as well as socio-economic issues such as the hydrogen economy - for over half a century from 1945 until his retirement in 1997.
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Chemistry and Materials Science (Springer-11644)
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