Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Regioselective Functionalization of Arenes Using Iron Triflimide Catalysis

View through CrossRef
AbstractHere we present our development of the super Lewis acid, iron(III) triflimide as an activating agent of N-halo- and N-thioaryl succinimides for the regioselective functionalization of arenes. We also describe how the iron(III)-catalyzed halogenation reactions were further exploited by combination with copper(I)-catalyzed Ullmann-type coupling reactions for the development of one-pot, multistep processes, including intermolecular aryl C–H amination. This Account also illustrates intramolecular versions of these one-pot processes for the preparation of benzannulated heterocycles, as well as the application of these methods for the synthesis of biologically active compounds and natural products.1 Introduction2 Iron(III)-Catalyzed Halogenation of Arenes3 One-Pot Intermolecular Aryl C–H Amination4 One-Pot Intramolecular C–N, C–O, and C–S Bond-Forming Processes5 Iron(III)-Catalyzed Thioarylation of Arenes6 Synthesis of Phenoxathiins and Phenothiazines Using Lewis Acid and Lewis Base Catalysis7 Conclusions
Title: Regioselective Functionalization of Arenes Using Iron Triflimide Catalysis
Description:
AbstractHere we present our development of the super Lewis acid, iron(III) triflimide as an activating agent of N-halo- and N-thioaryl succinimides for the regioselective functionalization of arenes.
We also describe how the iron(III)-catalyzed halogenation reactions were further exploited by combination with copper(I)-catalyzed Ullmann-type coupling reactions for the development of one-pot, multistep processes, including intermolecular aryl C–H amination.
This Account also illustrates intramolecular versions of these one-pot processes for the preparation of benzannulated heterocycles, as well as the application of these methods for the synthesis of biologically active compounds and natural products.
1 Introduction2 Iron(III)-Catalyzed Halogenation of Arenes3 One-Pot Intermolecular Aryl C–H Amination4 One-Pot Intramolecular C–N, C–O, and C–S Bond-Forming Processes5 Iron(III)-Catalyzed Thioarylation of Arenes6 Synthesis of Phenoxathiins and Phenothiazines Using Lewis Acid and Lewis Base Catalysis7 Conclusions.

Related Results

Iron stress affects the survival of Toxoplasma gondii
Iron stress affects the survival of Toxoplasma gondii
Abstract Background Iron possesses redox abilities and plays a crucial role in in biosynthesis, energy metabolism, and other biological processes. It represents an indispe...
Dual Catalysis
Dual Catalysis
Dual catalysis is a powerful strategy for developing new organic reactions that used to be challenging to achieve by traditional methods. Whether through relay catalysis or synergi...
Interpretable Attention-based Transfer Learning in Plasma Catalysis: A Study on the Role of Surface Charge
Interpretable Attention-based Transfer Learning in Plasma Catalysis: A Study on the Role of Surface Charge
Abstract Low-temperature plasma catalysis holds promise for electrification of energy-intensive chemical processes such as methane reforming and ammonia synthesis. However,...
Sustainable Catalysis: Navigating Challenges and Embracing Opportunities for a Greener Future
Sustainable Catalysis: Navigating Challenges and Embracing Opportunities for a Greener Future
Catalysis plays a crucial role in sustainable chemistry, as demonstrated in this review article. The introduction highlights the importance of catalysis in sustainability and summa...
Effect of Different Dietary Iron Contents on Liver Transcriptome Characteristics in Wujin Pigs
Effect of Different Dietary Iron Contents on Liver Transcriptome Characteristics in Wujin Pigs
Iron is an important trace element that affects the growth and development of animals and regulates oxygen transport, hematopoiesis, and hypoxia adaptations. Wujin pig has unique h...
Iron: From Basic Chemistry to Modern C∙H Bond Functionalization Catalysts
Iron: From Basic Chemistry to Modern C∙H Bond Functionalization Catalysts
Iron (Fe) is a first-row transition metal that offers several advantages, including low cost, Earth abundance, and environmental safety. These benefits are particularly significant...
Proizvodnja željeza u kasnoj antici i ranome srednjem vijeku u Podravini – tehnološki aspekti i društveni kontekst
Proizvodnja željeza u kasnoj antici i ranome srednjem vijeku u Podravini – tehnološki aspekti i društveni kontekst
Previous archaeological investigations in present-day Gornja Podravina have created prerequisites for the study of the wider context of iron production in the period of Late Antiqu...
Afrikanske smede
Afrikanske smede
African Smiths Cultural-historical and sociological problems illuminated by studies among the Tuareg and by comparative analysisIn KUML 1957 in connection with a description of sla...

Back to Top