Bimolecular Formation of Radicals by Hydrogen Transfer, 11. Transfer Hydrogenation of Conjugated Cyclic Dienes and Trienes
Author:
Publisher
Wiley
Subject
Organic Chemistry,Physical and Theoretical Chemistry,General Chemistry
Reference40 articles.
1. For a review see: , , , Angew. Chem., paper submitted.
2. Nichtkatalysierte Transferhydrierung von α-Methylstyrol durch Dihydroanthracen oder Xanthen als Radikalreaktion
3. The Uncatalyzed Transfer Hydrogenation ofα-Methylstyrene by Dihydroanthracene or Xanthene—a Radical Reaction
4. Transfer hydrogenation of p-substituted α-methylstyrenes by 9,10-dihydroanthracene
5. Transfer Hydrogenation of Nitro-, Nitroso- and Azoarenes by Homolytic Retrodisproportionation
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1. ChemInform Abstract: Bimolecular Formation of Radicals by Hydrogen Transfer. Part 11. Transfer Hydrogenation of Conjugated Cyclic Dienes and Trienes.;ChemInform;2010-08-04
2. Solvent-Free, Low-Temperature, Selective Hydrogenation of Polyenes using a Bimetallic Nanoparticle Ru-Sn Catalyst;Angewandte Chemie;2001-04-01
3. Solvent-Free, Low-Temperature, Selective Hydrogenation of Polyenes using a Bimetallic Nanoparticle Ru-Sn Catalyst;Angewandte Chemie International Edition;2001-04-01
4. Bimolecular Formation of Radicals by Hydrogen Transfer, 13. Uncatalyzed Transfer Hydrogenation of Azulene and the Initiation of the Azulene-Naphthalene Rearrangement;Liebigs Annalen;1997-10
5. Bimolecular Formation of Radicals by Hydrogen Transfer, 12. – Transfer hydrogenation ofp-Substituted α-Methylstyrenes and of 9-Methylenefluorene as a Criterion of Mechanism;Liebigs Annalen;1997-02
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