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Titlebook: Dendrimer Catalysis; Lutz H. Gade Book 2006 Springer-Verlag Berlin Heidelberg 2006 Dendrimer.Medicinal Chemistry.Organometallic chemistry.

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1436-6002 w of a specific topic in organometallic chemistry..Research .Since the first application of dendrimers in catalysis in the mid 1990s, this field has advanced rapidly. As a consequence, catalytically active dendrimers have emerged as a class of molecular catalysts that has substantially enriched the
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The Role of Macrophages in Storage Diseasesomproduct streams through a variety of separation technologies. This review surveys progress in thesynthesis and application of recyclable metallodendrimers for homogeneous catalysis and membrane filtrationtechnology.
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https://doi.org/10.1007/978-3-642-81696-3plying well-definedbinding sites, offering several advantages above the traditional covalent approaches. In this chapter wewill discuss the supramolecular approach in detail and we will highlight the progress in the area of supramoleculardendritic catalysis.
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Supramolecular Dendritic Catalysis: Noncovalent Catalyst Anchoring to Functionalized Dendrimers,l a major challenge. Dendrimers can be used aswell-defined nanosized supports for the immobilization of homogeneous catalysts leading to homogeneous catalyststhat can be easily removed from the reaction mixture by nanofiltration. So far most effort has been putinto the covalent functionalization of
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Stereoselective Dendrimer Catalysis, thus in principle suited to assessing “dendrimereffects” which result from the immobilization of molecular catalysts. Chiral dendrimer catalysts,which possess a high level of structural regularity, molecular monodispersity and well-defined catalyticsites, have been generated either by attachment of
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Dendrimer-Encapsulated Bimetallic Nanoparticles: Synthesis, Characterization, and Applications to Hsed to template and stabilize a wide variety of mono- andbimetallic nanoparticles. Depending on the specific requirements of the metal system, a variety ofsynthetic methodologies are available for preparing nanoparticles with diameters on the order of 1–3 nmwith narrow particle size distributions. T
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Metallodendritic Exo-Receptors for the Redox Recognition of Oxo-Anions and Halides,nd sensing of various anions including oxo-anions andhalides. The large size of higher-generation dendrimers ensures optimal adsorption on surfaces, a propertythat is used to derivatize Pt electrodes and provide re-usable sensors subsequent to washing the salt containingthe anion bound by weak supra
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