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Titlebook: Anionic Polymerization; Principles, Practice Nikos Hadjichristidis,Akira Hirao Book 2015 Springer Japan 2015 Anionic Polymerization.Block C

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发表于 2025-3-21 16:18:31 | 显示全部楼层 |阅读模式
期刊全称Anionic Polymerization
期刊简称Principles, Practice
影响因子2023Nikos Hadjichristidis,Akira Hirao
视频video
发行地址Focuses and expands on a specific area of polymers.Covers a wide range of topics on anionic polymerization from basic principles to experimental techniques important for practice.Topics include recent
图书封面Titlebook: Anionic Polymerization; Principles, Practice Nikos Hadjichristidis,Akira Hirao Book 2015 Springer Japan 2015 Anionic Polymerization.Block C
影响因子This book presents these important facts: a) The mechanism of anionic polymerization, a more than 50-year challenge in polymer chemistry, has now become better understood; b) Precise synthesis of many polymers with novel architectures (triblock, multi-block, graft, exact graft, comb, cyclic, many armed stars with multi-components, dendrimer-like hyper-branched, and their structural mixed (co)polymers, etc.) have been advanced significantly; c) Based on such polymers, new morphological and self-organizing nano-objects and supra molecular assemblies have been created and widely studied and are considered nanodevices in the fields of nano science and technology; d) New high-tech and industrial applications for polymeric materials synthesized by anionic polymerization have been proposed. These remarkable developments have taken place in the last 15 years. Anionic polymerization continues to be the only truly living polymerization system (100 % termination free under appropriate conditions) and consequently the only one with unique capabilities in the synthesis of well-defined (i.e., precisely controlled molecular weight, nearly mono-disperse molecular weight distribution, structural an
Pindex Book 2015
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书目名称Anionic Polymerization影响因子(影响力)




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书目名称Anionic Polymerization读者反馈学科排名




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High Vacuum Techniques for Anionic Polymerizationular architectures. Though HVTs require glassblowing skill for designing and making polymerization reactor, it is the best way to avoid any termination of living polymers during the number of steps for the synthesis of polymers with complex structure. In this chapter, we describe the different polym
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Cyclic Monomers: Epoxides, Lactide, Lactones, Lactams, Cyclic Silicon-Containing Monomers, Cyclic Caring-opening mechanism. This chapter presents successively the polymerization of cyclic ethers, cyclic esters, cyclic amides, cyclosiloxanes and other cyclic silicon-based compounds, cyclic carbonates, and other cyclic monomers, i.e., cycloalkanes, cyclic sulfides, cyclic amines, cyclic ureas, depsi
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Ring-Opening Polymerization of ,-Carboxyanhydrides for Preparation of Polypeptides and Polypeptide-Bd materials with various molecular architectures are described. An overview of polymerization mechanisms using conventional (various amines) as well as some recently developed initiators (hexamethyldisilazane, .-heterocyclic persistent carbenes, etc.) is presented, and their benefits and drawbacks f
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Poly(ferrocenylsilanes) with Controlled Macromolecular Architecture by Anionic Polymerization: Applilonging to the class of organometallic polymers, possess skeletal ferrocene and alkylsilane units which provide these solution-processable materials with a very high RIE resistance. First, it is shown that among the different paths for synthesizing PFS, anionic polymerization creates an opportunity
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Group Transfer Polymerization of Acrylic Monomers synthesis of acrylic polymers. In the GTP process, a silyl ketene acetal compound is used as an initiator and a Lewis base/acid as the catalysts, and polymerizations can be operated at advantageously moderate temperatures when compared with the conventional living anionic polymerizations of acrylic
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