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Biophysical chemistry of biointerfaces / Hiroyuki Ohshima

館藏資訊

摘要註

"The biophysical phenomena that occur on biointerfaces, or biological surfaces, hold a prominent place in the study of biology and medicine, and are crucial for research relating to implants, biosensors, drug delivery, proteomics, and many other important areas. Biophysical Chemistry of Biointerfaces takes the unique approach of studying biological systems in terms of the principles and methods of physics and chemistry, drawing its knowledge and experimental techniques from a wide variety of disciplines to offer new tools to better understand the intricate interactions of biointerfaces. Biophysical Chemistry of Biointerfaces: Provides a detailed description of the thermodynamics and electrostatics of soft particles ; Fully describes the biophysical chemistry of soft interfaces and surfaces (polymer-coated interfaces and surfaces) as a model for biointerfaces ; Delivers many approximate analytic formulas which can be used to describe various interfacial phenomena and analyze experimental data ; Offers detailed descriptions of cutting-edge topics such as the biophysical and interfacial chemistries of lipid membranes and gel surfaces, which serves as good model for biointerfaces in microbiology, hematology, and biotechnology. Biophysical Chemistry of Biointerfaces pairs sound methodology with fresh insight on an emerging science to serve as an information-rich reference for professional chemists as well as a source of inspiration for graduate and postdoctoral students looking to distinguish themselves in this challenging field."--Publisher's website

內容註

Part 1: Potential and charge at interfaces. Potential and Charge of a Hard Particle ; Potential Distribution Around a Non-uniformly Charged Surface and Discrete Charge Effects ; Modified Poisson-Boltzmann Equation ; Potential and Charge of a Soft Particle ; Free Energy of a Charged Surface ; Potential Distribution Around a Charged Particle in a Salt-Free Medium. -- Part 2: Interaction between surfaces. Electrostatic Interaction of Point Charges in an Inhomogeneous Medium ; Force and Potential Energy of the Double Layer Interaction Between Two Charged Colloidal Particles ; Double-Layer Interaction Between Two Parallel Similar Plates ; Electrostatic Interaction Between Two Parallel Dissimilar Plates ; Linear Superposition Approximation for the Double Layer Interaction of Particles at Large Separations ; Derjaguin's Approximation at Small Separations ; Donnan Potential-Regulated Interaction Between Porous Particles ; Series Expansion Representations for the Double-Layer Interaction Between Two Particles ; Electrostatic Interaction Between Soft Particles ; Electrostatic Interaction Between Nonuniformly Charged Membranes ; Electrostatic Repulsion Between Two Parallel Soft Pates After Their Contact ; Electrostatic Interaction Between Ion-Penetrable Membranes in a Salt-free Medium ; van der Waals Interaction Between Two Particles ; DLVO Theory of Colloid Stability. -- Part 3: Electrokinetic phenomena at interfaces. Electrophoretic Mobility of Soft Particles ; Electrophoretic Mobility of Concentrated Soft Particles ; Electrical Conductivity of a Suspension of Soft Particles ; Sedimentation Potential and Velocity in a Suspension of Soft Particles ; Dynamic Electrophoretic Mobility of a Soft Particle ; Colloid Vibration Potential in a Suspension of Soft Particles ; Effective Viscosity of a Suspension of Soft Particles. -- Part 4: Other topics. Membrane Potential and Donnan Potential

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