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Titlebook: Enzymatic Polymerization towards Green Polymer Chemistry; Shiro Kobayashi,Hiroshi Uyama,Jun-ichi Kadokawa Book 2019 Springer Nature Singap

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发表于 2025-3-21 16:48:00 | 显示全部楼层 |阅读模式
书目名称Enzymatic Polymerization towards Green Polymer Chemistry
编辑Shiro Kobayashi,Hiroshi Uyama,Jun-ichi Kadokawa
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概述Discusses how enzymatic polymerization is desirable for the environment and contributes to green polymer chemistry for the sustainable society.Explains the combination of enzyme and monomer from which
丛书名称Green Chemistry and Sustainable Technology
图书封面Titlebook: Enzymatic Polymerization towards Green Polymer Chemistry;  Shiro Kobayashi,Hiroshi Uyama,Jun-ichi Kadokawa Book 2019 Springer Nature Singap
描述This book comprehensively covers researches on enzymatic polymerization and related enzymatic approaches to produce well-defined polymers, which is valuable and promising for conducting green polymer chemistry. It consists of twelve chapters, including the following topics: .The three classes of enzymes, oxidoreductases, transferases and hydrolases, have been employed as catalysts for enzymatic polymerization and modification; .Well-defined polysaccharides are produced by enzymatic polymerization catalyzed by hydrolases and transferases; Hydrolase-catalyzed polycondensation and ring-opening polymerization are disclosed to produce a variety of polyesters;.Polyesters are synthesized by .in-vivo. acyltransferase catalysis produced by microorganisms; .Enzymatic polymerization catalyzed by appropriate enzymes also produces polypeptides and other polymers;.Poly(aromatic)s are obtained by enzymatic polymerization catalyzed by oxidoreductases and their model complexes;.Such enzymes also induce oxidative polymerization of vinyl monomers; .Enzymatic modification of polymers is achieved to produce functionalized polymeric materials; .The enzymatic polymerization is a green process with non-to
出版日期Book 2019
关键词Enzymes; Polymerization; Biocatalyst; Green synthesis; Polysaccharides; Polyesters; Poly(aromatics); Polype
版次1
doihttps://doi.org/10.1007/978-981-13-3813-7
isbn_ebook978-981-13-3813-7Series ISSN 2196-6982 Series E-ISSN 2196-6990
issn_series 2196-6982
copyrightSpringer Nature Singapore Pte Ltd. 2019
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Green Chemistry and Sustainable Technologyhttp://image.papertrans.cn/e/image/313040.jpg
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Springer Nature Singapore Pte Ltd. 2019
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Global Methods in Optimal Control Theory,alls, energy storage, cell recognition, and their immune response. The chemical synthesis of oligo- and polysaccharides is feasible though it can be laborious since multiple protection, deprotection, and purification steps are required. In contrast to this, phosphorylases are useful synthetic tools
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M. Pakdemirli,S. A. Nayfeh,A. H. Nayfehf either a glucose or a fructose from sucrose to produce glucans or fructans. The reactions need only a renewable carbon resource, such as sucrose, and proceed very efficiently, with high yields, with regio- and stereoselectivity, and in one-pot water-based system. This chapter provides an overview
发表于 2025-3-23 03:57:22 | 显示全部楼层
Christopher Essex,Bjarne Andresencondensation type using hydrolases mainly lipase as catalyst. First, characteristics of lipase catalysis are discussed: catalyst nature for green polymer chemistry including the catalysis mechanism, immobilization of lipases, role of surfactants for lipase catalysis, and so forth. Then, the lipase-c
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https://doi.org/10.1007/978-3-031-38924-5 catalyzed ROP. Lipase catalysis shows unique polymerization behaviors of lactones with different ring sizes. ROP mechanism of lactones by lipase catalyst is mentioned, which applies to preparation of terminal functional polyesters. Lipase catalysis induces enantio-, regio-, and chemoselective ROPs,
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