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Titlebook: Silicon-Containing Dendritic Polymers; Petar R. Dvornic,Michael J. Owen Book 2009 Springer Science+Business Media B.V. 2009 Copolymer.Cycl

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书目名称Silicon-Containing Dendritic Polymers
编辑Petar R. Dvornic,Michael J. Owen
视频video
概述The first book to solely focus on silicon-containing dendritic polymers.An invaluable guide and vanguard of reference for experienced scientists and advanced graduates interested in Polymer and Materi
丛书名称Advances in Silicon Science
图书封面Titlebook: Silicon-Containing Dendritic Polymers;  Petar R. Dvornic,Michael J. Owen Book 2009 Springer Science+Business Media B.V. 2009 Copolymer.Cycl
描述.During the last two decades silicon-containing dendritic polymers have become one of the fastest growing areas of development in polymer science. The eruption of interest in these new polymers stems from their unprecedented molecular architecture, unique resulting properties and the realization that they represent ideal building blocks for chemical nanotechnology...This is the first book to solely focus on silicon-containing dendritic polymers. The contributions of those experts who originally introduced each field or played a major role in its progress are reported. The developments in all major areas of this field are presented from their origins to the present. It is anticipated that this text will become an invaluable guide and vanguard of reference for experienced scientists interested in the fields of polymer and material science, synthetic chemistry, and nanotechnology. It will also serve advanced graduate students either as a source of creative inspiration or as a textbook for appropriate courses..
出版日期Book 2009
关键词Copolymer; Cyclization; Hydrosilylation; Hyperbranched Polymer; Organometallic polymer; Polymer; Polymeriz
版次1
doihttps://doi.org/10.1007/978-1-4020-8174-3
isbn_softcover978-90-481-7792-9
isbn_ebook978-1-4020-8174-3Series ISSN 1875-3108 Series E-ISSN 1875-3086
issn_series 1875-3108
copyrightSpringer Science+Business Media B.V. 2009
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The Role of Silicon in Dendritic Polymer Chemistry,interest in polymer science [1]. This can be easily seen from the impressive growth in the number of publications on these unique polymers, which soared from less than a dozen in the 1970s, to over 10,000 (in scientific journals and patent literature) by the end of 2007 [2]. At present, new publicat
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Carbosilane Dendrimers,olylysine dendrimers [2] and the seminal research by Tomalia and Newkome in the mid-1980s established that such molecules could indeed be prepared [3, 4]. Tomalia et al. used trifunctional nitrogen branch points and Newkome chose tetrafunctional carbon branch points. These dendrimers contained ether
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Polysilane Dendrimers,ars because of their electronic, optical, structural, and chemical properties [1]. In particular, the σ-conjugation of the –Si–Si– backbone has attracted much attention compared with analogous carbon polymer systems. Although, in contrast to the numerous reports on polysilanes with linear main chain
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Polycarbosilazane and Related Dendrimers and Hyperbranched Polymers, 2]. These polymers are characterized by having either a –Si–N– backbone (polysilazanes) or a –R–Si–N– backbone (polycarbosilazanes). On the other hand, dendritic analogs are relatively rare. Polysilazane dendrimers are essentially nonexistent, and the syntheses of polycarbosilazane dendrimers have
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