Lewis acid catalyzed Markovnikov hydrobromination and hydrochlorination of alkynes using TMSX (X = Br, Cl)
Dalong Shen,
Dehai Cao,
Ruizeng Zhang
et al.
Abstract:The Markovnikov hydrobromination and hydrochlorination of alkynes were achieved using TMSX (X = Br, Cl) instead of corrosive HX (X = Br, Cl) as the bromination and chlorination reagents. Mn(OAc)2.4H2O...
“…Recently, we achieved the hydrobromination and hydrochlorination of alkynes in the presence of Mn(II) and Zn(II) catalysts. 16 Herein, we would like to report our findings on the Mn(II)catalyzed hydroiodination reaction of terminal aryl alkynes. The current methodology featured the cheap Mn(II) catalyst, mild conditions, and gram-scale synthesis.…”
mentioning
confidence: 99%
“…In our previous hydrohalogenation reactions using TMSX (X = Br, Cl), we found that the choice of Lewis acid catalyst was based on both the Lewis acidity of TMSX and the electronic factors of substrates. 16 For electron-neutral/rich alkynes, Mn(OAc) 2 •4H 2 O was the hydrobromination catalyst. For hydrobromination of electron-deficient alkynes and hydrochlorination of alkynes, Zn(OAc) 2 •2H 2 O was employed as the catalyst.…”
mentioning
confidence: 99%
“…So, we assume that other TMSX reagents could be explored in the classical HX-involved reactions with the help of a catalyst. Recently, we achieved the hydrobromination and hydrochlorination of alkynes in the presence of Mn(II) and Zn(II) catalysts . Herein, we would like to report our findings on the Mn(II)-catalyzed hydroiodination reaction of terminal aryl alkynes.…”
A Mn(II)-catalyzed Markovnikov hydroiodination of terminal
aryl
alkynes with TMSI as the iodination reagent has been developed. Cheap
Mn(OAc)2·4H2O was employed as the catalyst.
Twenty-five aryl alkynes (including two internal alkynes) were successfully
transformed into their α-iodide styrene derivatives, including
those natural product-based alkynes and poly alkynyl benzenes. The
reaction has good chemoselectivity of alkynes over alkenes, which
enabled the tolerance of olefin in the substrate. Gram-scale synthesis
was also conducted.
“…Recently, we achieved the hydrobromination and hydrochlorination of alkynes in the presence of Mn(II) and Zn(II) catalysts. 16 Herein, we would like to report our findings on the Mn(II)catalyzed hydroiodination reaction of terminal aryl alkynes. The current methodology featured the cheap Mn(II) catalyst, mild conditions, and gram-scale synthesis.…”
mentioning
confidence: 99%
“…In our previous hydrohalogenation reactions using TMSX (X = Br, Cl), we found that the choice of Lewis acid catalyst was based on both the Lewis acidity of TMSX and the electronic factors of substrates. 16 For electron-neutral/rich alkynes, Mn(OAc) 2 •4H 2 O was the hydrobromination catalyst. For hydrobromination of electron-deficient alkynes and hydrochlorination of alkynes, Zn(OAc) 2 •2H 2 O was employed as the catalyst.…”
mentioning
confidence: 99%
“…So, we assume that other TMSX reagents could be explored in the classical HX-involved reactions with the help of a catalyst. Recently, we achieved the hydrobromination and hydrochlorination of alkynes in the presence of Mn(II) and Zn(II) catalysts . Herein, we would like to report our findings on the Mn(II)-catalyzed hydroiodination reaction of terminal aryl alkynes.…”
A Mn(II)-catalyzed Markovnikov hydroiodination of terminal
aryl
alkynes with TMSI as the iodination reagent has been developed. Cheap
Mn(OAc)2·4H2O was employed as the catalyst.
Twenty-five aryl alkynes (including two internal alkynes) were successfully
transformed into their α-iodide styrene derivatives, including
those natural product-based alkynes and poly alkynyl benzenes. The
reaction has good chemoselectivity of alkynes over alkenes, which
enabled the tolerance of olefin in the substrate. Gram-scale synthesis
was also conducted.
The chemoselective synthesis of trisubstituted alkenyl halides (Cl, Br, F, I) starting from ketones and aldehydes and lithum halocarbenoids is reported. Upon forming the corresponding tetrahedral intermediate adduct, followed by...
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