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Porous Inorganic Materials as Potential Supports for Ionic Liquids
edited_book
Author(s):
Wilhelm Schwieger
,
Thangaraj Selvam
,
Michael Klumpp
,
Martin Hartmann
Publication date
(Online):
February 07 2014
Publisher:
Wiley-VCH Verlag GmbH & Co. KGaA
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De Gruyter Materials: Nanotechnology
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Chemistry of Zeolites and Related Porous Materials
Ruren Xu
,
Wenqin Pang
,
Jihong Yu
…
(2007)
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Zeolites and Catalysis: Synthesis, Reactions and Applications
J Čejka
,
A Corma
,
S Zones
…
(2010)
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Aluminophosphate Molecular Sieves and the Periodic Table
Edith M. Flanigen
,
Brent M. Lok
,
R Lyle Patton
…
(1986)
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Author and book information
Book Chapter
Publication date (Online):
February 07 2014
Pages
: 37-74
DOI:
10.1002/9783527654789.ch3
SO-VID:
e57c566b-3aff-4c1b-9cfe-2b93f86b55f3
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Book chapters
pp. I
Front Matter
pp. 1
Introduction
pp. 11
Introducing Ionic Liquids
pp. 37
Porous Inorganic Materials as Potential Supports for Ionic Liquids
pp. 75
Synthetic Methodologies for Supported Ionic Liquid Materials
pp. 95
Pore Volume and Surface Area of Supported Ionic Liquids Systems
pp. 105
Transport Phenomena, Evaporation, and Thermal Stability of Supported Ionic Liquids
pp. 145
Ionic Liquids at the Gas-Liquid and Solid-Liquid Interface - Characterization and Properties
pp. 177
Spectroscopy on Supported Ionic Liquids
pp. 191
A Priori Selection of the Type of Ionic Liquid
pp. 209
Supported Ionic Liquids as Part of a Building-Block System for Tailored Catalysts
pp. 233
Coupling Reactions with Supported Ionic Liquid Catalysts
pp. 251
Selective Hydrogenation for Fine Chemical Synthesis
pp. 263
Hydrogenation with Nanoparticles Using Supported Ionic Liquids
pp. 279
Solid Catalysts with Ionic Liquid Layer (SCILL)
pp. 307
Supported Ionic Liquid Phase (SILP) Materials in Hydroformylation Catalysis
pp. 327
Ultralow Temperature Water-Gas Shift Reaction Enabled by Supported Ionic Liquid Phase Catalysts
pp. 351
Biocatalytic Processes Based on Supported Ionic Liquids
pp. 369
Supported Ionic Liquid Phase Catalysts with Supercritical Fluid Flow
pp. 385
Pharmaceutically Active Supported Ionic Liquids
pp. 407
Supported Protic Ionic Liquids in Polymer Membranes for Electrolytes of Nonhumidified Fuel Cells
pp. 419
Gas Separation Using Supported Ionic Liquids
pp. 445
Ionic Liquids on Surfaces - a Plethora of Applications
pp. 457
Outlook - The Technical Prospect of Supported Ionic Liquid Materials
pp. 467
Index
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