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The Chemistry of Metal-Organic Frameworks

Synthesis, Characterization, and Applications

The Chemistry of Metal-Organic Frameworks
Author
Kaskel, Stefan (EDT) 
Publisher
VCH 
Publication Date
Sep, 2016 
ISBN
3527338748 or 9783527338740
HARDCOVER 
849 Pages
出版済み 3-5週間でお届けいたします。
The delivery time takes 3 to 5 weeks

¥ 48,741 (tax included)

Description

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Providing vital knowledge on the design and synthesis of specific metal-organic framework (MOF) classes as well as their properties, this ready reference summarizes the state of the art in chemistry.
Divided into four parts, the first begins with a basic introduction to typical cluster units or coordination geometries and provides examples of recent and advanced MOF structures and applications typical for the respective class. Part II covers recent progress in linker chemistries, while special MOF classes and morphology design are described in Part III. The fourth part deals with advanced characterization techniques, such as NMR, in situ studies, and modelling. A final unique feature is the inclusion of data sheets of commercially available MOFs in the appendix, enabling experts and newcomers to the field to select the appropriate MOF for a desired application.
A must-have reference for chemists, materials scientists, and engineers in academia and industry working in the field of catalysis, gas and water purification, energy storage, separation, and sensors.

Contents

INTRODUCTION
1) Introduction
2) Network Topology

PART I: MOF CHEMISTRY OF METALLIC CLUSTERS AND OTHER NODES
3) Copper and Zink
4) Manganese, Cobalt, and Nickel
5) Alkaline Earth Metals
6) Aluminium, Gallium and Indium-based MOFs
7) Titanium, Zirconium, and Hafnium
8) Iron, Group 5 and 6 MOFs
9) Platinum Group Metals
10) Group 3 Elements and Lanthanide Metals

PART II: FUNCTIONAL LINKERS
11) Carboxylates -
Basics and Advances
12) Extended Linkers for Ultrahigh Surface Area MOFs
13) Imidazolate MOFs and other N-Donor Systems
14) Functional Linkers for Catalysis
15) Chiral Linker Systems
16) Sulfur Containing Linkers
17) Phosphonate Ligands
18) Optical and Electronic Functions in Linkers
19) Photocatalytic Linkers

PART III: SPECIAL MOF CLASSES AND MORPHOLOGY DESIGN OF MOFS
20) Nanoparticles
21) Thin Films
22) Granulation and Shaping
23) From "Soft Porous Framework" to "Ion Conducting PCP/MOF"

PART IV: PROGRESS IN ADVANCED CHARACTERIZATION OF MOFS
24) Advanced Physisorption Methods and MOF Peculiarities
25) Nuclear Magnetic Resonance in MOF Science
26) Electron Paramagnetic Resonance
27) Local IR and Raman Probes
28) In Situ X-ray Diffraction and EXAFS
29) In Situ Crystallization Studies
30) Modelling
31) Defects and Disorder in MOFs

APPENDIX (MOF User Data Sheets)

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