de Vries, J. G.: 2018 Science of Synthesis, 2017/6: Catalytic Reduction in Organic Synthesis 2 DOI: 10.1055/sos-SD-227-00001
Catalytic Reduction in Organic Synthesis 2

2.1 Reduction of Aldehydes

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Book

Editor: de Vries, J. G.

Authors: Ayad, T. ; Bagal, D.; Besson, M.; Bhanage, B. ; Ciszek, B.; Claver, C.; Cole-Hamilton, D.; Fleischer, I. ; Hinze, S.; Ikariya, T.; Junge, K.; Kalck, P.; Kamer, P.; Kayaki, Y. ; Llopis, Q.; Matsunami, A.; Monguchi, Y.; Peñafiel, I.; Phansavath, P.; Pinel, C.; Puylaert, P.; Ratovelomanana-Vidal, V. ; Sajiki, H.; Savini, A.; Shi, Y.; Steinfeldt, N.; Urrutigoity, M.

Title: Catalytic Reduction in Organic Synthesis 2

Print ISBN: 9783132406261; Online ISBN: 9783132406308; Book DOI: 10.1055/b-005-145235

Subjects: Organic Chemistry;Chemical Reactions, Catalysis;Organometallic Chemistry;Laboratory Techniques, Stoichiometry

Science of Synthesis Reference Libraries



Parent publication

Title: Science of Synthesis

DOI: 10.1055/b-00000101

Series Editors: Fürstner, A. (Editor-in-Chief); Carreira, E. M.; Faul, M.; Koch, G.; Molander, G. A.; Shibasaki, M.; Thomas, E. J.; Trost, B. M.

Type: Multivolume Edition

 


Abstract

Alcohols are valuable chemical intermediates and products that can be obtained by reduction of aldehydes. This chapter describes methods where the aldehyde reduction is performed in the liquid phase with hydrogen delivered directly from a cylinder or by hydrogen-donor molecules. Since they are both widely applied, both heterogeneous and homogeneous catalyzed reactions are considered.

 
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