Cover image for Synthetic polymeric membranes : characterization by atomic force microscopy
Title:
Synthetic polymeric membranes : characterization by atomic force microscopy
Personal Author:
Series:
Springer laboratory
Publication Information:
Berlin : Springer, 2008
Physical Description:
197 p. : ill. ; 24 cm.
ISBN:
9783540739937

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30000010168912 TP159.M4 K48 2007 Open Access Book Book
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Summary

Summary

Tis book concentrates on atomic force microscopy (AFM), a method recently - veloped to study the surfaces of synthetic polymeric membranes. AFM is becoming a very important tool for the characterization of synthetic polymeric membranes. Te development of membranes of improved performance depends on the exact kn- ledge of the morphology of a thin selective layer that exists at the surface of the m- brane. Te control of the morphology of the selective layer is crucial for the design of synthetic polymeric membranes. With a relatively short history of only twen- ?ve years, AFM has ?rmly established its position as a method to characterize the membrane surface. Each chapter of this book includes information on basic principles, commercial applications, current research, and guidelines for future research. Each chapter is summarized at the end and contains a comprehensive list of references. Te introductory chapter gives a brief overview of synthetic polymeric m- branes and their applications both in industrial processes and in biomedical ?elds. It also gives an overview of studies on membrane surface morphology by various methods. Chapter ? deals with the synthesis of membranes, the properties of membranes, and the application of membranes. Te beginning also identi?es the three types of membranes (i.e., biological, synthetic, and theoretical) and their applications.


Table of Contents

Introduction.
Synthetic Membranes for Membrane Processes.
Atomic Force Microscopy.
Nodular Structure of Polymers in the Membrane.
Pore Size, Pore Size Distribution, and Roughness at the Membrane Surface.
Cross-Sectional AFM Image.
Adhesion.
Membrane Surface Morphology and Membrane Performance.