42.16. 4 Phosphoric Acid and Derivatives (Update 2021)
Book
Editors: Jiang, X.; Marek, I.; Marschner, C.; Montchamp, J.-L.; Reissig, H.-U.; Wang, M.
Title: Knowledge Updates 2021/1
Print ISBN: 9783132441958; Online ISBN: 9783132441972; Book DOI: 10.1055/b000000476
1st edition © 2021 Thieme. All rights reserved.
Georg Thieme Verlag KG, Stuttgart
Subjects: Organic Chemistry;Chemical Reactions, Catalysis;Organometallic Chemistry;Laboratory Techniques, Stoichiometry
Science of Synthesis Knowledge Updates
Parent publication
Title: Science of Synthesis
DOI: 10.1055/b-00000101
Series Editors: Fürstner, A. (Editor-in-Chief); Carreira, E. M.; Faul, M.; Kobayashi, S.; Koch, G.; Molander, G. A.; Nevado, C.; Trost, B. M.; You, S.-L.
Type: Multivolume Edition
Abstract
The methods presented in this update are mainly based on those reported since the original Science of Synthesis chapter on this topic (Section 42.16), which was published in 2009. The phosphoric acid derivatives covered include P=O compounds (e.g., phosphates, S-alkyl phosphorothioates, diphosphates, and triphosphates) and P=S compounds (O-alkyl phosphorothioates, etc.). Emphasis is placed on the synthesis of biologically relevant compounds, particularly nucleotides, oligonucleotides, phosphorylated sugars, and lipids.
Key words
organophosphorus compounds - phosphoric acids - phosphates - phosphorothioates - diphosphates - triphosphates - nucleosides - nucleotides - oligonucleotides - sugars - lipids - triphosphorodithioates - triphosphorothioates - dithiophosphates - phosphorothioates - bisphosphonates - bromotrimethylsilane - silyldealkylation - McKenna reaction- 7 Melnikova NB, Malygina DS, Klabukova IN, Belov DV, Vasin VA, Petrov PS, Knyazev AV, Markin AV. Molecules 2018; 23: 1175
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