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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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Joanna M. Bridger,Ishita S. Mehtave polymerization. Peroxidases with the use of hydrogen peroxide as oxidant efficiently induce the oxidative coupling of phenols to phenolic polymers, most of which are hardly obtained by conventional chemical catalysts. The enzymatic oxidative polymerizations have merits of using nontoxic catalysts
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發(fā)表于 2025-3-24 01:43:07 | 只看該作者
https://doi.org/10.1007/978-1-4613-0367-1 complexes include Fe/porphyrin complexes and Fe/.,.′-bis(salicylidene)ethylenediamine complexes as Fe-containing peroxidase-models, Cu complexes having three nitrogen coordination atoms as Cu-containing monooxygenase models, and multinuclear Cu complexes as Cu-containing oxidase models. By using th
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Joelle Murray,Wolfgang Bauer,Kevin HaglinWhereas chemical modification methods are most commonly practiced, sometimes enzyme-catalyzed modifications may be desirable because of the specificity of the reactions, reduction in the by-products produced, milder reaction conditions, and more benign environmental impact. A number of enzyme-cataly
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https://doi.org/10.1007/978-981-13-3813-7Enzymes; Polymerization; Biocatalyst; Green synthesis; Polysaccharides; Polyesters; Poly(aromatics); Polype
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Book 2019luable 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 polys
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