Theory Of Colloid And Interfacial Electric Phenomena
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Author | : Hiroyuki Ohshima |
Publisher | : Elsevier |
Total Pages | : 491 |
Release | : 2006-09-05 |
Genre | : Technology & Engineering |
ISBN | : 0080465145 |
Theory of Colloid and Interfacial Electric Phenomena is written for scientists, engineers, and graduate students who want to study the fundamentals and current developments in colloid and interfacial electric phenomena, and their relation to stability of suspensions of colloidal particles and nanoparticles in the field of nanoscience and nanotechnology. The primary purpose of this book is to help understand how the knowledge on the structure of electrical double layers, double layer interactions, and electrophoresis of charged particles will be important to understand various interfacial electric phenomena and to improves the reader's skill and save time in the study of interfacial electric phenomena. Also providing theoretical background and interpretation of electrokinetic phenomena and many approximate analytic formulas describing various colloid and interfacial electric phenomena, which will be useful and helpful to understand these phenomena analyse experimental data. Showing the fundamentals and developments in the field First book to describe electrokinetics of soft particles Providing theoretical background and interpretation of electrokinetic phenomena
Author | : Hiroyuki Ohshima |
Publisher | : Routledge |
Total Pages | : 650 |
Release | : 2018-02-06 |
Genre | : Science |
ISBN | : 1351453491 |
Revising, updating and expanding information on developments since the late 1980s, the second edition of this work presents practical, fundamental material on interfacial electric phenomena in acqueous and nonaqueous systems, as well as their relation to colloid stability. The book includes 15 additional chapters that reflect collaborative efforts with new experts in the field.
Author | : Hiroyuki Ohshima |
Publisher | : CRC Press |
Total Pages | : 650 |
Release | : 1998-08-21 |
Genre | : Science |
ISBN | : 9780824790394 |
Revising, updating and expanding information on developments since the late 1980s, the second edition of this work presents practical, fundamental material on interfacial electric phenomena in acqueous and nonaqueous systems, as well as their relation to colloid stability. The book includes 15 additional chapters that reflect collaborative efforts with new experts in the field.
Author | : Hiroyuki Ohshima |
Publisher | : John Wiley & Sons |
Total Pages | : 870 |
Release | : 2012-02-14 |
Genre | : Science |
ISBN | : 0470582553 |
This book bridges three different fields: nanoscience, bioscience, and environmental sciences. It starts with fundamental electrostatics at interfaces and includes a detailed description of fundamental theories dealing with electrical double layers around a charged particle, electrokinetics, and electrical double layer interaction between charged particles. The stated fundamentals are provided as the underpinnings of sections two, three, and four, which address electrokinetic phenomena that occur in nanoscience, bioscience, and environmental science. Applications in nanomaterials, fuel cells, electronic materials, biomaterials, stems cells, microbiology, water purificiaion, and humic substances are discussed.
Author | : Jacob H. Masliyah |
Publisher | : John Wiley & Sons |
Total Pages | : 733 |
Release | : 2006-05-26 |
Genre | : Science |
ISBN | : 0471799734 |
A new, definitive perspective of electrokinetic and colloid transport processes Responding to renewed interest in the subject of electrokinetics, Electrokinetic and Colloid Transport Phenomena is a timely overview of the latest research and applications in this field for both the beginner and the professional. An outgrowth of an earlier text (by coauthor Jacob Masliyah), this self-contained reference provides an up-to-date summary of the literature on electrokinetic and colloid transport phenomena as well as direct pedagogical insight into the development of the subject over the past several decades. A distinct departure from standard colloid science monographs, Electrokinetic and Colloid Transport Phenomena presents the most salient features of the theory in a simple and direct manner, allowing the book to serve as a stepping-stone for further learning and study. In addition, the book uniquely discusses numerical simulation of electrokinetic problems and demonstrates the use of commercial finite element software for solving these multiphysics problems. Among the topics covered are: * Mathematical preliminaries * Colloidal systems * Electrostatics and application of electrostatics * Electric double layer * Electroosmosis and streaming potential * Electrophoresis and sedimentation potential * London-Van der Waals forces and the DLVO theory * Coagulation and colloid deposition * Numerical simulation of electrokinetic phenomena * Applications of electrokinetic phenomena Because this thorough reference does not require advanced mathematical knowledge, it enables a graduate or a senior undergraduate student approaching the subject for the first time to easily interpret the theories. On the other hand, the application of relevant mathematical principles and the worked examples are extremely useful to established researchers and professionals involved in a wide range of areas, including electroosmosis, streaming potential, electrophoretic separations, industrial practices involving colloids and complex fluids, environmental remediation, suspensions, and microfluidic systems.
Author | : K. S. Birdi |
Publisher | : CRC Press |
Total Pages | : 180 |
Release | : 2010-04-26 |
Genre | : Science |
ISBN | : 1420053701 |
With the rapid development of nanotechnology, the surface-to-volume ratio of objects of interest continues to increase. As such, so does the importance of our ability to tailor interfacial properties. Written by bestselling author and internationally renowned researcher K.S. Birdi, Introduction to Electrical Interfacial Phenomena offers comprehensi
Author | : Tharwat F. Tadros |
Publisher | : Walter de Gruyter GmbH & Co KG |
Total Pages | : 364 |
Release | : 2015-05-19 |
Genre | : Science |
ISBN | : 3110388529 |
This fundamental book on interfacial phenomena forms the basis of application of interface and colloid science to various disperse systems. These include suspensions, emulsions, nano-dispersions, wetting, spreading, deposition and adhesion of particles to surfaces. These systems occur in most industrial applications, such as personal care and cosmetic formulations, pharmaceutical systems particularly for controlled and targeted delivery of drugs, agrochemical formulations and enhancement of their biological performance, paints and coatings as well as most food formulations. These applications are described in volume 2. The text is very valuable for formulation chemists, chemical engineers and technologies who are involved in such applications. In addition this fundamental text is also valuable for research scientists and Ph.D. students investigating various aspects of interface and colloid science.
Author | : Emelio A. Scarpetti |
Publisher | : Nova Publishers |
Total Pages | : 358 |
Release | : 2007 |
Genre | : Science |
ISBN | : 9781600215995 |
This book presents leading-edge research on colloids and surface science and spans a wide range of topics including biological interactions at surfaces, molecular assembly of selective surfaces, role of surface chemistry in microelectronics and catalysis, tribology, and colloidal physics in the context of crystallisation and suspensions; fluid interfaces; adsorption; surface aspects of catalysis; dispersion preparation, characterisation and stability; aerosols, foams and emulsions; surfaces forces; micelles and microemulsions; light scattering and spectroscopy; nanoparticles; new material science; detergency and wetting; thin films, liquid membranes and bilayers; surfactant science; polymer colloids; rheology of colloidal and disperse systems; electrical phenomena in interfacial and disperse systems.
Author | : S. P. Stoylov |
Publisher | : |
Total Pages | : 312 |
Release | : 1991 |
Genre | : Science |
ISBN | : |
Presenting a comprehensive theoretical description of phenomena and properties in a broad range of colloidal systems, this book is concerned with theory, experimental methodology, and applications of colloid electro-optics. It lays down the fundamentals of electro-optics theory for colloidal particles and provides an extensive description of the powerful methods used for characterizing these systems. Chapters on experimental methods and on extensive critical evaluation of current data for colloids, polymers, and biological systems make this a stimulating volume for colloid materials and biological scientists. Key Features * Discusses the theory of electro-optics in colloidal systems, interfacial phenomena, surface charge distribution, and zeta potential * Describes methods for characterizing geometrical, optical, and electrical properties of disperse colloidal systems * Presents experimental methods and techniques * Discusses applications in materials science (oxides, clays, minerals, dyes) and biological systems (viruses, cells, organelles, membranes, nucleic acids, and protein)
Author | : J.T. Davies |
Publisher | : Academic Press |
Total Pages | : 507 |
Release | : 2012-12-02 |
Genre | : Science |
ISBN | : 0323148344 |
Interfacial Phenomena examines the fundamental properties of various liquid interfaces. This book discusses the physics of surfaces; electrostatic and electrokinetic phenomena; and adsorption at liquid interfaces. The properties of monolayers; reactions at liquid surfaces; diffusion through interfaces; and disperse systems and adhesion are also deliberated. Other topics include the vapor pressures over curved surfaces; electrical capacity of the double layer; applications of electrophoresis; and thermodynamics of adsorption and desorption. The experimental methods of spreading films at the oil-water interface; penetration into monolayers; experiments on dynamic systems; and spontaneous emulsification are likewise covered in this text. This book is beneficial to chemical engineers and students concerned with interfacial phenomena.