The First Decade of SuFEx Chemistry: Advancements in SuFEx Polymerization, Non-Canonical SuFEx Reactions, and SuFEx Radiochemistry DOI

Min Pyeong Kim,

Manoj Kumar Sahoo, Joong‐Hyun Chun

et al.

Synthesis, Journal Year: 2024, Volume and Issue: unknown

Published: Oct. 7, 2024

Abstract This year marks the 10th anniversary of SuFEx chemistry, a field that has witnessed significant advancements over past decade. These include efficient synthetic strategies toward polymerization via approach leading to diverse polymers, alongside discovery new SuFExable hubs and coupling conditions. Non-canonical reactions, such as deoxyfluorination on-water have also emerged. Furthermore, there been substantial strides in radiosynthesis [18F] hubs. review provides an overview these developments, focusing on polymerization, non-canonical reaction, radiochemistry chemistry. 1 Introduction 2 Polymerization 3 Non-Canonical Reactions 4 Fluorine-18 Radiochemistry 5 Conclusions Outlook

Language: Английский

Sulfur (VI) fluoride exchange (SuFEx): a versatile tool to profile protein-biomolecule interactions for therapeutic development DOI
Lingyun Yang,

Zhengnan Yuan,

Yongkuan Li

et al.

Medicinal Chemistry Research, Journal Year: 2024, Volume and Issue: 33(8), P. 1315 - 1329

Published: June 18, 2024

Language: Английский

Citations

2

A Unified Synthesis of Diazenes from Primary Amines Using a SuFEx/Electrochemistry Strategy DOI Creative Commons
Katarzyna Doktor, Julien C. Vantourout, Quentin Michaudel

et al.

Organic Letters, Journal Year: 2024, Volume and Issue: 26(36), P. 7501 - 7506

Published: Sept. 3, 2024

The electrochemical synthesis of 1,2-disubsituted diazenes via anodic oxidation bench stable symmetrical and unsymmetrical sulfamides is reported. This work capitalizes on the streamlined preparation diverse

Language: Английский

Citations

1

Selective Electrochemical Modification and Degradation of Polymers DOI
Rhys W. Hughes, J. Márquez, James B. Young

et al.

Angewandte Chemie, Journal Year: 2024, Volume and Issue: 136(20)

Published: Feb. 28, 2024

Abstract We demonstrate that electrochemical‐induced decarboxylation enables reliable post‐polymerization modification and degradation of polymers. Polymers containing N ‐(acryloxy)phthalimides were subjected to electrochemical under mild conditions, which led the formation transient alkyl radicals. By installing these redox‐active units, we systematically modified pendent groups chain ends polyacrylates. This approach enabled production poly(ethylene‐ co ‐methyl acrylate) poly(propylene‐ copolymers, are difficult synthesize by direct polymerization. Spectroscopic chromatographic techniques reveal transformations near‐quantitative on several polymer systems. Electrochemical also all‐methacrylate poly( ‐(methacryloxy)phthalimide‐ methacrylate) copolymers with a efficiency >95 %. Chain cleavage is achieved through ‐hydroxyphthalimide ester subsequent β‐scission backbone radical. Electrochemistry thus shown be powerful tool in selective controlled macromolecular degradation.

Language: Английский

Citations

0

The First Decade of SuFEx Chemistry: Advancements in SuFEx Polymerization, Non-Canonical SuFEx Reactions, and SuFEx Radiochemistry DOI

Min Pyeong Kim,

Manoj Kumar Sahoo, Joong‐Hyun Chun

et al.

Synthesis, Journal Year: 2024, Volume and Issue: unknown

Published: Oct. 7, 2024

Abstract This year marks the 10th anniversary of SuFEx chemistry, a field that has witnessed significant advancements over past decade. These include efficient synthetic strategies toward polymerization via approach leading to diverse polymers, alongside discovery new SuFExable hubs and coupling conditions. Non-canonical reactions, such as deoxyfluorination on-water have also emerged. Furthermore, there been substantial strides in radiosynthesis [18F] hubs. review provides an overview these developments, focusing on polymerization, non-canonical reaction, radiochemistry chemistry. 1 Introduction 2 Polymerization 3 Non-Canonical Reactions 4 Fluorine-18 Radiochemistry 5 Conclusions Outlook

Language: Английский

Citations

0