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Titlebook: Regulated Systems for Multiphase Catalysis; Walter Leitner,Markus Hölscher Book 2008 Springer-Verlag Berlin Heidelberg 2008 ITIES.Ion.Orga

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发表于 2025-3-21 16:09:30 | 显示全部楼层 |阅读模式
书目名称Regulated Systems for Multiphase Catalysis
编辑Walter Leitner,Markus Hölscher
视频video
概述Each volume of Topics in Organometallic Chemistry provides the broad scientific readership with a comprehensive summary and critical overview of a specific topic in organometallic chemistry.Research i
丛书名称Topics in Organometallic Chemistry
图书封面Titlebook: Regulated Systems for Multiphase Catalysis;  Walter Leitner,Markus Hölscher Book 2008 Springer-Verlag Berlin Heidelberg 2008 ITIES.Ion.Orga
描述.Multiphase catalysis in recent years has been shown in academia and industry to be the emerging key technology for the competitive and sustainable production of fine chemicals in the next decades. It convincingly unites the indispensable core advantages of homogeneous catalysis with future governmental and industrial sustainability criteria. In a joint effort by seven of Germany‘s most distinguished scientists in the field and four renowned industry partners a research consortium was established which for the first time has systematically explored and related the main issues and mutual interdependencies of the different approaches in multiphase catalysis. This work has resulted in the development of an expert tool box, which relates the complex chemical and process based requirements to be considered when setting up a catalytic system. The resulting competence covers various fields as supercritical fluid (SCF) technology in catalysis, ionic liquids (Il), ligand design for SFCs and Ils, thermomorphic solvent systems, reactor design and many more. The reader will receive a critical survey of the state of the art together with suggestions helping to choose on which integrated catalys
出版日期Book 2008
关键词ITIES; Ion; Organometallic chemistry; carbon; carbon dioxide; catalysis; catalyst; chemistry; metals; supercr
版次1
doihttps://doi.org/10.1007/978-3-540-71076-9
isbn_softcover978-3-642-09015-8
isbn_ebook978-3-540-71076-9Series ISSN 1436-6002 Series E-ISSN 1616-8534
issn_series 1436-6002
copyrightSpringer-Verlag Berlin Heidelberg 2008
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Multiphase Catalysis in Industry,ar examples are asymmetric oxidations and reductionsand a variety of cross-coupling reactions to form . − . and C-heteroatom bonds. Examples are the Heck reaction, Suzuki–Kumadaand Sonagashira coupling reactions and the aryl-aminations introduced by Buchwald and Hartwig..These reactions are homogene
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Multiphase Catalysis in Temperature-Dependent Multi-Component Solvent (TMS) Systems,olvent systems and suitable compositions for variousreactions were determined by cloud titrations. The results were summarized in an expert system for thesolvent selection. Appropriate thermomorphic solvent systems were applied to different C − Cbond-forming reactions: the telomerization of butadien
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PEG-Modified Ligands for Catalysis and Catalyst Recycling in Thermoregulated Systems, will lie on the hydroformylation of higher olefins.The general principles of thermoregulated phase-transfer catalysis and thermoregulated phase-separable catalysiswill be explained and the use of this recycling technique in hydroformylation catalysis exemplified. Differentsynthetic approaches towar
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Temperature-Controlled Catalyst Recycling: New Protocols Based upon Temperature-Dependent Solubilitnse solubility increases in organic solvents or neat liquid reactantsupon heating. Suitably designed fluorous catalysts can therefore be employed under homogeneous conditionsat elevated temperatures, and recovered by solid/liquid phase separation at lower temperatures. Expensivefluorous solvents are
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Engineering Aspects of Aqueous Biphasic Catalysis,driven loop reactor. The regioselective hydrogenationof α,β-unsaturated aldehydes to the corresponding unsaturated alcohols with a water-solubleand highly active Ru(II)-TPPTS complex catalyst was chosen as model reaction system. Theoretical and experimentalanalysis of the mass transport rates at the
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1436-6002 w of a specific topic in organometallic chemistry.Research i.Multiphase catalysis in recent years has been shown in academia and industry to be the emerging key technology for the competitive and sustainable production of fine chemicals in the next decades. It convincingly unites the indispensable c
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