Oxide Surfaces

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A01=James A. Wingrave
Adsorbed
Adsorbed Layer
Adsorbed Molecules
Adsorbed Polymer Layer
Adsorption
Adsorption Isotherms
Alcohol Molecules
Amount
Author_James A. Wingrave
Brush Layer
Category=PNK
Category=PNRX
Co-ordination Numbers
Conditional Equilibrium Constant
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
fluid-oxide interfaces
Free Radical Graft Polymerization
gas-solid adsorption
Generalized Langevin Equation
Graft
Graft Polymerization
Graft Yield
Grafted Polymer Layers
Heterovalent Substitution
Initial Monomer Concentration
Inorganic Membranes
Isotherm
Isotherm Equations
Layer
Mineral
Ml Equation
Molar Mass
Molecule
Monomer
Monomer Volume Fraction
non-polymeric solutes
oxide membranes
Oxide Mineral Surfaces
Polymer
Polymer Adsorption
polymeric desorption
Strong Adsorbent Adsorbate Interaction
Surface Phonons
Vibrational Energy Exchange

Product details

  • ISBN 9780367455156
  • Weight: 453g
  • Dimensions: 178 x 254mm
  • Publication Date: 18 Dec 2020
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Paperback
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A detailed treatment of information relating to fluid-oxide interfaces. It outlines methods for quantifying adsorption and desorption of polymeric and non-polymeric solutes at the gas- and solution-oxide interfaces. It also analyzes novel properties of oxide membranes and the synthesis and dissolution of oxide solids.
JAMES A. WINGRAVE is an Assistant Professor, University of Delaware, Newark. The author or coauthor of over 20 technical publications, Dr. Wingrave is an advisory board member of the Journal of Colloid and Interface Science and holds ten United States patents. He received the B.A. degree (1969) in chemistry from Emporia State University, Kansas, and the Ph.D. degree in physical chemistry from the University of Texas at Austin.

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