Fernández, E. et al.: 2021 Science of Synthesis, 2021/2: Knowledge Updates 2021/2 DOI: 10.1055/sos-SD-105-00330
Knowledge Updates 2021/2

5.2.24.10 Arylstannanes (Update 2021)

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Book

Editors: Fernández, E.; Huang, Z.; Jiang, X.; Koch, G.; Marschner, C.; Wang, M.

Authors: Chand, K. ; Davies, G. H. M.; Dorairaj, D. P.; Guo, R.; Hsu, S. C. N. ; Isovitsch, R.; Jiang, X.; Růžička, A.; Sirvinskas, M.; Takeda, N.; Trofimova, A.; Umesh; Vrána, J.; Wang, M.; Wisniewski, S. R.; Xiong, Y.; Ye, Z.-S.; Yudin, A. K.; Zhang, G. Z.

Title: Knowledge Updates 2021/2

Print ISBN: 9783132442061; Online ISBN: 9783132442085; Book DOI: 10.1055/b000000477

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

This chapter is an update to the earlier Science of Synthesis contribution describing methods for the synthesis and uses of arylstannanes. The focus is on the literature published in the period 2001–2020. Novel synthetic methods for the formation of the target compounds are reviewed, including reactions of aryl anions with aryltin halides, reactions of diazonium salts or aryl azo sulfones with distannanes, and various catalyzed processes. The use of arylstannanes as substrates in organic chemistry and radiochemistry is also discussed; these compounds can undergo coupling reactions, destannylations, metal–tin exchange reactions, electrophilic substitutions, and oxidative addition processes.

 
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