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Polyelectrolytes. --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers
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Polymer electrolytes are electrolytic materials that are widely used in batteries, fuel cells and other applications such as supercapacitors, photoelectrochemical and electrochromic devices. Polymer electrolytes: Fundamentals and applications provides an important review of this class of ionic conductors, their properties and applications.Part one reviews the various types of polymer electrolyte compounds, with chapters on ceramic polymer electrolytes, natural polymer-based polymer electrolytes, composite polymer electrolytes, lithium-doped hybrid polymer electrolytes, hybrid inorganic
Polyelectrolytes. --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers
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For full market implementation of PEM fuel cells to become a reality, two main limiting technical issues must be overcome- cost and durability. This cutting-edge volume directly addresses the state-of-the-art advances in durability within every fuel cell stack component. [...] chapters on durability in the individual fuel cell components -- membranes, electrodes, diffusion media, and bipolar plates -- highlight specific degradation modes and mitigation strategies. The book also includes chapters which synthesize the component-related failure modes to examine experimental diagnostics, computational modeling, and laboratory protocol"--Back cover.
Fuel cells. --- Fuel cells --- Polyelectrolytes. --- Reliability. --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Direct energy conversion --- Electric batteries --- Electric power production from chemical action --- Electrochemistry
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Biopolymer Electrolytes: Fundamentals and Applications in Energy Storage provides the core fundamentals and applications for polyelectrolytes and their properties with a focus on biopolymer electrolytes. Increasing global energy and environmental challenges demand clean and sustainable energy sources to support the modern society. One of the feasible technologies is to use green energy and green materials in devices. Biopolymer electrolytes are one such green material and, hence, have enormous application potential in devices such as electrochemical cells and fuel cells. Features a stable of case studies throughout the book that underscore key concepts and applications Provides the core fundamentals and applications for polyelectrolytes and their properties Weaves the subject of biopolymer electrolytes across a broad range of disciplines, including chemistry, chemical engineering, materials science, environmental science, and pharmaceutical science.--
Electrochemistry --- Polyelectrolytes. --- Biopolymers. --- Electrolytes. --- Electrochemistry. --- Chemistry, Physical and theoretical --- Bioactive polymers --- Biological polymers --- Natural polymers --- Naturally occurring polymers --- Biomolecules --- Polymers --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes
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Polyelectrolytes --- Electrolytes --- Globulins --- Nucleic Acids --- Polysaccharides --- 577.2 --- Biochemie : eiwitten --- Biochemie : polyelectrolyten --- Nucleinezuren : biochemie --- 541.135 --- Polymer electrolytes --- Polymeric electrolytes --- Polymers --- 541.135 Eletrolysis. Electrolytes. Polarization --- Eletrolysis. Electrolytes. Polarization --- Electrolyte --- Potassium Magnesium Aspartate --- analysis --- General biochemistry --- Polyelectrolytes.
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fysicochemie --- Macromolecules --- Electrochemistry --- Polyelectrolytes. --- Polyélectrolytes --- 631.823 --- 678.01:535 --- Polyelectrolytes --- #KVIV --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Polyelectrolytes. Soil conditioners --- Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Optics --- 678.01:535 Properties. Defects. Constitution. Serviceability. Sampling. Analysis. Testing-:-Optics --- 631.823 Polyelectrolytes. Soil conditioners --- Polyélectrolytes
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Thin films, Multilayered. --- Nanostructured materials. --- Polyelectrolytes. --- Langmuir-Blodgett, Couches de --- Nanomatériaux --- Polyélectrolytes --- Nanostructure materials --- Polyelectrolytes --- Thin films, Multilayered --- Langmuir-Blodgett films --- Multilayered thin films --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Nanomaterials --- Nanometer materials --- Nanophase materials --- Nanostructure controlled materials --- Ultra-fine microstructure materials --- Microstructure --- Nanotechnology --- Nanomatériaux --- Polyélectrolytes --- Nanostructured materials
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Roland G. Winkler and Andrey G. Cherstvy Strong and Weak Polyelectrolyte Adsorption onto Oppositely Charged Curved Surfaces Nikolai I. Lebovka Aggregation of Charged Colloidal Particles Cornelia Cramer and Monika Schönhoff Ion Conduction in Solid Polyelectrolyte Complex Materials Saskia Lindhoud and Martien A. Cohen Stuart Relaxation phenomena during polyelectrolyte complex formation Dmitry V. Pergushov, Alexey A. Zezin, Alexander B. Zezin, and Axel H.E. Müller Advanced Functional Structures Based on Interpolyelectrolyte Complexes.
Chemistry. --- Polymers. --- Biochemistry. --- Polymer Sciences. --- Electrochemistry. --- Biochemistry, general. --- Chemistry --- Physical Sciences & Mathematics --- Organic Chemistry --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Polymere --- Polymeride --- Polymers and polymerization --- Composition --- Biology --- Medical sciences --- Macromolecules --- Physical sciences --- Chemistry, Physical and theoretical --- Polyelectrolytes. --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Polymers .
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Caroline Ankerfors and Lars Wagberg Polyelectrolyte Complexes for Tailoring of Wood Fibre Surfaces Gudrun Petzold and Simona Schwarz Polyelectrolyte Complexes in Flocculation Applications Said Bouhallab and Thomas Croguennec Spontaneous Assembly and Induced Aggregation of Food Proteins Annabelle Bertin Polyelectrolyte Complexes of DNA and Polycations as Gene Delivery Vectors M. Müller Sizing, Shaping and Pharmaceutical Applications of Polyelectrolyte Complex Nanoparticles.
Chemistry. --- Polymers. --- Biochemistry. --- Polymer Sciences. --- Electrochemistry. --- Biochemistry, general. --- Chemistry --- Physical Sciences & Mathematics --- Organic Chemistry --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Polymere --- Polymeride --- Polymers and polymerization --- Composition --- Polyelectrolytes. --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Biology --- Medical sciences --- Macromolecules --- Physical sciences --- Polymers . --- Chemistry, Physical and theoretical
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The two volumes 165 and 166 Polyelectrolytes with Defined Molecular Architecture summarize recent progress in the field. The subjects comprise novel polyelectrolyte architectures including planar, cylindrical and spherical polyelectrolyte brushes as well as micelle, complex and membrane formation. Some solution properties such as conformation of flexible polyions, osmotic coefficients and electrophoretic properties are addressed along with recent progress in analytical theory and simulation.
Polyelectrolytes. --- Organic Chemistry --- Chemistry --- Physical Sciences & Mathematics --- Polyelectrolytes --- Polymer electrolytes --- Polymeric electrolytes --- Electrolytes --- Polymers --- Polymers . --- Condensed matter. --- Physical chemistry. --- Organic chemistry. --- Polymer Sciences. --- Condensed Matter Physics. --- Physical Chemistry. --- Organic Chemistry. --- Organic chemistry --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Solids --- Polymere --- Polymeride --- Polymers and polymerization --- Macromolecules
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