de Vries, J. G.: 2018 Science of Synthesis, 2017/5: Catalytic Reduction in Organic Synthesis 1 DOI: 10.1055/sos-SD-226-00066
Catalytic Reduction in Organic Synthesis 1

1.3 Reduction of Arenes

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Buch

Herausgeber: de Vries, J. G.

Autoren: Bonrath, W.; Cazin, C. ; Chen, Z.-P.; Dai, X.; de Vries, J. G.; Ding, K. ; Ghosh, B.; Hudson, R.; Kaneda, K. ; Li, Y.; Lv, H. ; Maleczka, Jr., R.; Medlock, J.; Mitsudome, T.; Moores, A.; Müller, M.-A.; Nahra, F. ; Nakagawa, Y.; Poechlauer, P.; Ravasio, N.; Shi, F.; Tamura, M.; Tan, X.; Tin, S.; Tomishige, K.; Zaccheria, F.; Zhang, X.; Zhou, Y.-G. ; Zimmermann, A.

Titel: Catalytic Reduction in Organic Synthesis 1

Print ISBN: 9783132406216; Online ISBN: 9783132406254; Buch-DOI: 10.1055/b-005-145236

Fachgebiete: Organische Chemie;Chemische Reaktionen, Katalyse;Organometallchemie;Chemische Labormethoden, Stöchiometrie

Science of Synthesis Reference Libraries



Übergeordnete Publikation

Titel: Science of Synthesis

DOI: 10.1055/b-00000101

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

Typ: Mehrbändiges Werk

 


Abstract

The group VIII metals, boranes, and Lewis pairs can catalyze the reduction of arenes to afford cycloalkanes. Cycloalkenes, as the intermediate product in the reduction of arenes, can also be generated by the partial reduction of arenes in the presence of ruthenium- and rhodium-based catalysts, but the selective partial reduction of polycyclic arenes to cycloalkenes still remains a challenge.

 
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