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Titlebook: Biotransformations in Organic Chemistry; A Textbook Kurt Faber Textbook 20116th edition Springer-Verlag Berlin Heidelberg 2011 Biocatalysis

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期刊全稱Biotransformations in Organic Chemistry
期刊簡(jiǎn)稱A Textbook
影響因子2023Kurt Faber
視頻videohttp://file.papertrans.cn/189/188805/188805.mp4
發(fā)行地址First textbook on biotransformations.Meanwhile the established text in the field.More and more courses are taught on this subject at universities worldwide.6th edition is didactically improved by incl
圖書封面Titlebook: Biotransformations in Organic Chemistry; A Textbook Kurt Faber Textbook 20116th edition Springer-Verlag Berlin Heidelberg 2011 Biocatalysis
影響因子.The use of biocatalysts, employed either as isolated enzymes or whole microbial cells, offers a remarkable arsenal of highly selective transformations for state-of-the-art synthetic organic chemistry. Over the last two decades, this methodology has become an indispensable tool for asymmetric synthesis, not only at the academic level, but also on an industrial scale..This well-established textbook on biocatalysis provides a basis for undergraduate and graduate courses in modern organic chemistry, as well as a condensed introduction into this field. After a basic introduction into the use of biocatalysts—principles of stereoselective transformations, enzyme properties and kinetics—the different types of reactions are explained according to the ‘reaction principle‘, such as hydrolysis, reduction, oxidation, C–C bond formation, etc. Special techniques, such as the use of enzymes in organic solvents, immobilization techniques and modified or artificial enzymes, are treated in a separate section. A final chapter deals with thebasic rules for the safe and practical handling of biocatalysts..In this completely revised 6th edition, emphasis has been given to an improved didactic style incl
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https://doi.org/10.1007/978-3-319-29322-6ld be due to the fact, that biological systems would have to be handled. Where the growth and maintenance of whole microorganisms is concerned, such hesitation is probably justified. In order to save endless frustrations, close collaboration with a microbiologist or a biochemist is highly recommende
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https://doi.org/10.1007/978-3-319-29322-6 esterases, or lipases. The key features that have made hydrolases the favorite class of enzymes for organic chemists during the past two decades are their lack of sensitive cofactors (which otherwise would need to be recycled) and the large number of readily available enzymes possessing relaxed sub
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https://doi.org/10.1007/978-94-011-3260-2ant position in contemporary organic synthesis [1–3]. The increased interest of synthetic chemists in the biotransformation of nonnatural compounds has spurred the commercial availability of enzymes in various forms and grades of purity [4]. To date, almost 10% of all papers published in the area of
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