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Photoelectrochemical Solar Conversion Systems: Molecular and Electronic Aspects

AUTHOR Muoz, Andrs G.; Munoz, Andres G.; Muoz, Andrs G. et al.
PUBLISHER CRC Press (10/23/2019)
PRODUCT TYPE Paperback (Paperback)

Description

Providing new insights into the molecular and electronic processes involved in the conversion of sunlight into chemical products, Photoelectrochemical Solar Conversion Systems: Molecular and Electronic Aspects begins with an historical overview and a survey of recent developments in the electrochemistry of semiconductors and spectroscopic techniques. It then provides a comprehensive introduction to the science of conversion cells, reviews current issues and potential directions, and covers a wide range of materials from organic to inorganic cells.

Employing a tutorial organization with balanced coverage of electrochemistry and solar energy conversion, this book covers:

  • The conversion of sunlight into chemical energy and different actual conversion concepts
  • Electrochemical methods for the construction and characterization of electrolyte-metal-oxide-semiconductor contacts (EMOS) in the nanodimensions, the so-called nano-emitter concept, including the electrochemical formation of metal clusters of catalytic metals and the formation of passivating layers by anodization
  • The fundamentals of electrocatalysis with emphasis on the hydrogen evolution reaction and the electrochemical CO2 reduction
  • Classical and quantum mechanical theories of electron transfer reactions in metal-electrolyte interfaces and their relation with surface electronics
  • The physicochemical characterization of the model system Si-SiOx-metal-electrolyte by means of modern electrochemical, surface, and spectroscopic methods
  • Improvements of conversion efficiency by means of optical effects, for example, the generation of surface plasmons by nano-dimensioned arrangements of optically active metals
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Product Format
Product Details
ISBN-13: 9780367380687
ISBN-10: 0367380684
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
More Product Details
Page Count: 356
Carton Quantity: 10
Product Dimensions: 6.10 x 0.90 x 9.20 inches
Weight: 0.90 pound(s)
Country of Origin: US
Subject Information
BISAC Categories
Science | Chemistry - Industrial & Technical
Science | Power Resources - Alternative & Renewable
Science | Physics - Condensed Matter
Dewey Decimal: 621.312
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Providing new insights into the molecular and electronic processes involved in the conversion of sunlight into chemical products, Photoelectrochemical Solar Conversion Systems: Molecular and Electronic Aspects begins with an historical overview and a survey of recent developments in the electrochemistry of semiconductors and spectroscopic techniques. It then provides a comprehensive introduction to the science of conversion cells, reviews current issues and potential directions, and covers a wide range of materials from organic to inorganic cells.

Employing a tutorial organization with balanced coverage of electrochemistry and solar energy conversion, this book covers:

  • The conversion of sunlight into chemical energy and different actual conversion concepts
  • Electrochemical methods for the construction and characterization of electrolyte-metal-oxide-semiconductor contacts (EMOS) in the nanodimensions, the so-called nano-emitter concept, including the electrochemical formation of metal clusters of catalytic metals and the formation of passivating layers by anodization
  • The fundamentals of electrocatalysis with emphasis on the hydrogen evolution reaction and the electrochemical CO2 reduction
  • Classical and quantum mechanical theories of electron transfer reactions in metal-electrolyte interfaces and their relation with surface electronics
  • The physicochemical characterization of the model system Si-SiOx-metal-electrolyte by means of modern electrochemical, surface, and spectroscopic methods
  • Improvements of conversion efficiency by means of optical effects, for example, the generation of surface plasmons by nano-dimensioned arrangements of optically active metals
Show More
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