Ferrocenium hexafluorophosphate as an inexpensive, mild catalyst for the etherification of propargylic alcohols
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Process Chemistry and Technology,Catalysis
Reference114 articles.
1. Transition-Metal-Catalyzed Functionalization of Propargylic Alcohols and Their Derivatives
2. Transition-Metal-Catalyzed Enantioselective Propargylic Substitution Reactions of Propargylic Alcohol Derivatives with Nucleophiles
3. Copper(i) iodide catalyzed synthesis of primary propargylic alcohols from terminal alkyne
4. Asymmetric synthesis of propargylic alcohols via aldol reaction of aldehydes with ynals promoted by prolinol ether–transition metal–Brønsted acid cooperative catalysis
5. Regioselective Dihalohydration Reactions of Propargylic Alcohols: Gold-Catalyzed and Noncatalyzed Reactions
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1. Ferrocenophanium Stability and Catalysis;Molecules;2023-03-17
2. Organic synthesis with the most abundant transition metal–iron: from rust to multitasking catalysts;Chemical Society Reviews;2021
3. Ferrocenium complex aided O-glycosylation of glycosyl halides;RSC Advances;2021
4. Ferrocenium Ions as Catalysts: Decomposition Studies and Counteranion Influence on Catalytic Activity;Synthesis;2020-12-21
5. Ferrocenium Cations as Catalysts for the Etherification of Cyclopropyl-Substituted Propargylic Alcohols: Ene-yne Formation and Mechanistic Insights;European Journal of Organic Chemistry;2019-11-19
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