Neutral organic super electron donors (SEDs) display impressive reducing power but, until now, it has not been possible to use them catalytically in radical chain reactions. This is because, following electron transfer, these donors form persistent radical cations that trap substrate-derived radicals. This paper unlocks a conceptually new approach to super electron donors that overcomes this issue, leading to the first catalytic neutral organic super electron donor
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
A new ground-state organic electron donor has been prepared that features four strongly π-donating i...
Within both the industrial and academic laboratory, the coupling of two aryl moieties is a process o...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
In the past decade, a host of exceptionally strong organic electron donors has been designed and pre...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
This project aims to explore the ability of organic molecules to transfer electrons and is based on ...
This thesis was previously held under moratorium from 01/04/2020 to 01/04/2022This Thesis contains t...
This thesis was previously held under moratorium from 01/04/2020 to 01/04/2022This Thesis contains t...
In recent times, metal-free chemistry has received significant attention due to its inherent qualiti...
In the past decade, a host of exceptionally strong organic electron donors has been designed and pre...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
Associate Editor: M. P. Sibi © 2012 Garnier et al; licensee Beilstein-Institut. License and terms: s...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
A new ground-state organic electron donor has been prepared that features four strongly π-donating i...
Within both the industrial and academic laboratory, the coupling of two aryl moieties is a process o...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
In the past decade, a host of exceptionally strong organic electron donors has been designed and pre...
Based on simple ideas of electron-rich alkenes, exemplified by tetrakis(dimethylamino)ethene, TDAE, ...
This project aims to explore the ability of organic molecules to transfer electrons and is based on ...
This thesis was previously held under moratorium from 01/04/2020 to 01/04/2022This Thesis contains t...
This thesis was previously held under moratorium from 01/04/2020 to 01/04/2022This Thesis contains t...
In recent times, metal-free chemistry has received significant attention due to its inherent qualiti...
In the past decade, a host of exceptionally strong organic electron donors has been designed and pre...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
Associate Editor: M. P. Sibi © 2012 Garnier et al; licensee Beilstein-Institut. License and terms: s...
International audienceOne-electron reduction is commonly used in organic chemistry to achieve radica...
A new ground-state organic electron donor has been prepared that features four strongly π-donating i...
Within both the industrial and academic laboratory, the coupling of two aryl moieties is a process o...