thiophosphoric acid
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2020 ◽  
Author(s):  
Hiromu Fuse ◽  
Harunobu Mitsunuma ◽  
Motomu Kanai

A formal C‒H addition of N-heteroaromatics to aldehydes<br>was achieved using a binary hybrid catalyst system comprising an acridinium photoredox catalyst and a thiophosphoric acid organocatalyst. The reaction proceeded through the following sequence: 1) photoredox-catalyzed single-electron oxidation of a thiophosphoric acid catalyst to generate a thiyl radical, 2) cleavage of the formyl C‒H bond of the aldehyde substrates by a thiyl radical acting as a hydrogen atom transfer catalyst to generate acyl radicals, 3) Minisci-type addition of the resulting acyl radicals to N-heteroaromatics, and 4) a spin-center shift, photoredox-catalyzed single-electron reduction, and protonation to produce secondary alcohol products. This metal-free hybrid catalysis proceeded under mild conditions for a wide range of substrates, including isoquinolines, quinolines, and pyridines as N-heteroaromatics, as well as both aromatic and aliphatic aldehydes, and tolerated various functional groups. The reaction was applicable to late-stage derivatization of drugs and their leads.


2020 ◽  
Author(s):  
Hiromu Fuse ◽  
Harunobu Mitsunuma ◽  
Motomu Kanai

A formal C‒H addition of N-heteroaromatics to aldehydes<br>was achieved using a binary hybrid catalyst system comprising an acridinium photoredox catalyst and a thiophosphoric acid organocatalyst. The reaction proceeded through the following sequence: 1) photoredox-catalyzed single-electron oxidation of a thiophosphoric acid catalyst to generate a thiyl radical, 2) cleavage of the formyl C‒H bond of the aldehyde substrates by a thiyl radical acting as a hydrogen atom transfer catalyst to generate acyl radicals, 3) Minisci-type addition of the resulting acyl radicals to N-heteroaromatics, and 4) a spin-center shift, photoredox-catalyzed single-electron reduction, and protonation to produce secondary alcohol products. This metal-free hybrid catalysis proceeded under mild conditions for a wide range of substrates, including isoquinolines, quinolines, and pyridines as N-heteroaromatics, as well as both aromatic and aliphatic aldehydes, and tolerated various functional groups. The reaction was applicable to late-stage derivatization of drugs and their leads.


2020 ◽  
Vol 11 (44) ◽  
pp. 12206-12211 ◽  
Author(s):  
Hiromu Fuse ◽  
Hiroyasu Nakao ◽  
Yutaka Saga ◽  
Arisa Fukatsu ◽  
Mio Kondo ◽  
...  

Hydroxyalkylation of N-heteroaromatics with aldehydes was achieved using a binary hybrid catalyst system comprising an acridinium photoredox catalyst and a thiophosphoric acid organocatalyst.


ChemInform ◽  
2010 ◽  
Vol 22 (46) ◽  
pp. no-no
Author(s):  
C.-C. TANG ◽  
G.-P. WU ◽  
G.-Z. ZHANG

ChemInform ◽  
2010 ◽  
Vol 29 (51) ◽  
pp. no-no
Author(s):  
O. A. AIMAKOV ◽  
K. B. ERZHANOV ◽  
T. A. MASTRYUKOVA
Keyword(s):  

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