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Titlebook: Hydroboration and Organic Synthesis; 9-Borabicyclo [3.3.1 Ranjit S. Dhillon Book 2007 Springer-Verlag Berlin Heidelberg 2007 Medicinal Chem

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发表于 2025-3-21 16:19:13 | 显示全部楼层 |阅读模式
书目名称Hydroboration and Organic Synthesis
副标题9-Borabicyclo [3.3.1
编辑Ranjit S. Dhillon
视频video
概述Contents is essential for synthetic chemists‘ everyday life.No systematic compilation of the vast data is available to synthetic chemist.This book will fill the gap.Includes supplementary material:
图书封面Titlebook: Hydroboration and Organic Synthesis; 9-Borabicyclo [3.3.1 Ranjit S. Dhillon Book 2007 Springer-Verlag Berlin Heidelberg 2007 Medicinal Chem
描述.9-Borabicyclo [3.3.1]nonane, a commercially available reagent, is the most versatile hydroborating reagent to synthesize organoboranes (B-R-9-BBN). The reagent exhibits remarkable regio-, chemo-, and stereoselectivity during hydroboration reactions. The organoboranes can be converted to C-H, C-O, C-N, C-S, C-halogen, C-metal and above all C-C bonds. In addition, the suitable substituted / unsaturated R of B-R-9-BBN can be utilized to produce dienes, enynes, allenes etc. with defined stereochemistry. 9-BBN’s derivatives have been elegantly used for the asymmetric reduction of ketone moiety. Diels-Alder and Suzuki reactions have expanded the utility of 9-BBN for the synthesis of a variety of organic compounds required for industry. Consequently, this vast field in the form of a book will be helpful to synthetic organic chemists for easy access to literature, required for chemical transformations..
出版日期Book 2007
关键词Medicinal Chemistry; Stereoselective Synthesis; chemistry; organic synthesis; synthesis
版次1
doihttps://doi.org/10.1007/978-3-540-49076-0
isbn_softcover978-3-642-08034-0
isbn_ebook978-3-540-49076-0
copyrightSpringer-Verlag Berlin Heidelberg 2007
The information of publication is updating

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on and characterization techniques have been discussed. Finally, environmental applications of bionanocomposites based on layered silicates in the field of food, agriculture, soil and water treatments, both in cleaning and desalination, are contemplated.
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ogen and electron acceptor to form alcohol, cannot occur. Paradoxically, this does not mean that biodeterioration will not take place under anaerobic conditions; trophic degradation can and does occur providing an alternative electron acceptor such as nitrate or sulphate is present. Whilst primary d
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ogen and electron acceptor to form alcohol, cannot occur. Paradoxically, this does not mean that biodeterioration will not take place under anaerobic conditions; trophic degradation can and does occur providing an alternative electron acceptor such as nitrate or sulphate is present. Whilst primary d
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eatment, biological processes in many cases constitute the most cost-effective technology for treating low pollutant concentrations and their implementation at industrial scale is growing exponentially. Unfortunately, several VHs can produce toxic effects to the microbial communities, leading to inh
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apter will focus primarily on the aromatic ringhydroxylating dioxygenases (Rieske non-heme iron dioxygenases; EC 1.14.12), which initiate an attack on aromatic hydrocarbons, heterocycles and related compounds carrying various substituents (Cl, NO.). The aspects described will relate to dioxygenase d
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apter will focus primarily on the aromatic ringhydroxylating dioxygenases (Rieske non-heme iron dioxygenases; EC 1.14.12), which initiate an attack on aromatic hydrocarbons, heterocycles and related compounds carrying various substituents (Cl, NO.). The aspects described will relate to dioxygenase d
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e may also be applied for risk assessment in context with registration and notification procedures of any kind of chemical substances by environmental authorities. An assessment scheme is also proposed for the biodegradation and elimination in sewage treatment plants as well as the toxic impact of s
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