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Diffusion In Nanoporous Materials Prof Dr Jorg Karger Prof Dr Douglas M Ruthven

  • SKU: BELL-4303056
Diffusion In Nanoporous Materials Prof Dr Jorg Karger Prof Dr Douglas M Ruthven
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Diffusion In Nanoporous Materials Prof Dr Jorg Karger Prof Dr Douglas M Ruthven instant download after payment.

Publisher: Wiley-VCH
File Extension: PDF
File size: 10.75 MB
Pages: 882
Author: Prof. Dr. Jorg Karger, Prof. Dr. Douglas M. Ruthven, Prof. Doros N. Theodorou(auth.)
ISBN: 9783527310241, 9783527651276, 352731024X, 3527651276
Language: English
Year: 2012

Product desciption

Diffusion In Nanoporous Materials Prof Dr Jorg Karger Prof Dr Douglas M Ruthven by Prof. Dr. Jorg Karger, Prof. Dr. Douglas M. Ruthven, Prof. Doros N. Theodorou(auth.) 9783527310241, 9783527651276, 352731024X, 3527651276 instant download after payment.

Atoms and molecules in all states of matter are subject to continuous irregular movement. This process, referred to as diffusion, is among the most general and basic phenomena in nature and determines the performance of many technological processes.
This book provides an introduction to the fascinating world of diffusion in microporous solids. Jointly written by three well known researchers in this field, it presents a coherent treatise, rather than a compilation of separate review articles, covering the theoretical fundamentals, molecular modeling, experimental observation and technical applications.
Based on the book Diffusion in Zeolites and other Microporous Solids, originally published in 1992, it illustrates the remarkable speed with which this field has developed since that time.
Specific topics include: new families of nanoporous materials, micro-imaging and single particle tracking, direct monitoring of transient profiles by interference microscopy, single file diffusion and new approaches to molecular modeling.

Content:
Chapter 1 Elementary Principles of Diffusion (pages 1–24):
Chapter 2 Diffusion as a Random Walk (pages 25–58):
Chapter 3 Diffusion and Non?equilibrium Thermodynamics (pages 59–83):
Chapter 4 Diffusion Mechanisms (pages 85–110):
Chapter 5 Single?File Diffusion (pages 111–142):
Chapter 6 Sorption Kinetics (pages 143–189):
Chapter 7 Constructing Molecular Models and Sampling Equilibrium Probability Distributions (pages 191–226):
Chapter 8 Molecular Dynamics Simulations (pages 227–273):
Chapter 9 Infrequent Event Techniques for Simulating Diffusion in Microporous Solids (pages 275–301):
Chapter 10 Measurement of Elementary Diffusion Processes (pages 303–345):
Chapter 11 Diffusion Measurement by Monitoring Molecular Displacement (pages 347–394):
Chapter 12 Imaging of Transient Concentration Profiles (pages 395–426):
Chapter 13 Direct Macroscopic Measurement of Sorption and Tracer Exchange Rates (pages 427–457):
Chapter 14 Chromatographic and Permeation Methods of Measuring Intraparticle Diffusion (pages 459–513):
Chapter 15 Amorphous Materials and Extracrystalline (Meso/Macro) Pores (pages 515–560):
Chapter 16 Eight?Ring Zeolites (pages 561–606):
Chapter 17 Large Pore (12?Ring) Zeolites (pages 607–651):
Chapter 18 Medium?Pore (Ten?Ring) Zeolites (pages 653–728):
Chapter 19 Metal Organic Frameworks (MOFs) (pages 729–767):
Chapter 20 Zeolite Membranes (pages 769–805):
Chapter 21 Diffusional Effects in Zeolite Catalysts (pages 807–837):

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