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Titlebook: Effects of Nanoconfinement on Catalysis; Rinaldo Poli Book 2017 Springer International Publishing AG 2017 Capsules in Catalysis.Catalytic P

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发表于 2025-3-21 17:17:53 | 显示全部楼层 |阅读模式
书目名称Effects of Nanoconfinement on Catalysis
编辑Rinaldo Poli
视频video
概述Focuses on the effect of a nanostructured environment on catalytic performance (activity, selectivity, catalyst stabilization, recycling, etc.).Compares the nanoconfinement effects on all types of cat
丛书名称Fundamental and Applied Catalysis
图书封面Titlebook: Effects of Nanoconfinement on Catalysis;  Rinaldo Poli Book 2017 Springer International Publishing AG 2017 Capsules in Catalysis.Catalytic P
描述This book highlights the recent advances and state of the art in the use of functionalized nanostructured environments on catalysis. Nanoconfinements considered include well-defined molecular cages, imprinted self-assembled supramolecules, polymers made by living or controlled polymerization, metallorganic frameworks, carbon nanotubes, mesoporous inorganic solids, and hybrids thereof. Advantages of nanoconfinement of catalysts discussed include higher activities, improved selectivities, catalyst stabilization, cooperativity effects, simplified protocols for cascade syntheses, better catalyst recovery, and recyclability. The multiple applications that these materials offer are revolutionizing industrial sectors such as energy, electronics, sensors, biomedicine, and separation technology.
出版日期Book 2017
关键词Capsules in Catalysis; Catalytic Performance; Confinement Strategies; Dendrimers; Functionalized Nanostr
版次1
doihttps://doi.org/10.1007/978-3-319-50207-6
isbn_softcover978-3-319-84345-2
isbn_ebook978-3-319-50207-6Series ISSN 1574-0447
issn_series 1574-0447
copyrightSpringer International Publishing AG 2017
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Self-Assembled Coordination Cages and Organic Capsules as Catalytic Supramolecular Reaction Vesselseparation of many artificial host molecules that are not only capable of encapsulating a variety of guests but also of promoting reactions inside their cavities. As the environment dramatically influences the behavior of chemical systems, recent years have seen increased interest in the use of the s
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Catalysis Inside Folded Single Macromolecules in Water,trates into products. In contrast, synthetic polymers typically adopt random coil conformations in dilute solution or, in poor solvents, dense globular structures. Yet, the capability to control the global conformation of a synthetic polymer opened up many new applications that result from a three-d
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Microgel Star Polymer Catalysts as Active and Functional Nanoreactors for Organic Reactions and Polizations. Microgel star polymers are soluble core-shell gels consisting of a covalently crosslinked microgel core that is covered by multiple linear arm chains. The central cores thus serve as nano-confined spaces for various applications. Actually, microgel star polymers are effective as polymeric
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Core-Cross-Linked Micelles and Amphiphilic Nanogels as Unimolecular Nanoreactors for Micellar-Type, exemplified by the large-scale Rhône-Poulenc/Ruhrchemie hydroformylation process, but can only be applied when the substrate is sufficiently soluble in the aqueous phase to sustain sufficiently fast mass transport. Different solutions to reduce mass transport limitations include the use of additive
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