Low-temperature1H,13C,77Se, and125Te NMR studies on the apical-apical ligand exchange via the hypervalent tellurium and selenium ate complexes [10-M-3(C3); M = Se, Te] in the reactions of diaryl tellurides and selenides with aryllithium reagents
Author:
Publisher
Wiley
Subject
General Chemistry
Reference45 articles.
1. A New Preparative Method of Organoalkali and Organoalkaline-Earth Metals Using Metal-Tellurium Exchange Reactions
2. A new access to acyl- and aroyllithiums via lithium-tellurium exchange
3. Carbamoyllithiums. A Novel Method for Generation by Lithium-Tellurium Exchange Reaction
4. Lithium-Tellurium Exchange: A New Entry to Organolithium Compounds
5. Mechanism of the Lithium-Tellurium, Lithium-Iodine and Lithium-Mercury Exchange Reactions: Hypervalent Tellurium and Iodine Ate Complexes
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1. Synthetic Approaches to Fluoroalkyltelluryl‐Substituted Compounds;European Journal of Organic Chemistry;2020-08-07
2. 3.02 Organolithium Compounds Bearing a Phenyl-, a Vinyl-, and/or a Seleno Group on their Carbanionic Centers: Synthesis by Se/Li Exchange and Unusual Synthetic Applications;Comprehensive Organic Synthesis II;2014
3. Role of Organolithium Aggregates and Mixed Aggregates in Organolithium Mechanisms;Chemical Reviews;2013-08-13
4. Synthesis of Anionic Hypervalent Cyclic Selenenate Esters: Relevance to the Hypervalent Intermediates in Nucleophilic Substitution Reactions at the Selenium(II) Center;Chemistry - A European Journal;2011-12-21
5. Mechanism of the lithiumiodine exchange in an iodothiophene;Canadian Journal of Chemistry;2005-09-01
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