The present invention relates to a compound represented by the formula: wherein A is pyridyl group having at least one substituent wherein R1, R2 and R3 are each a hydrogen atom, a halogen atom, a C1-6 alkyl group optionally substituted by halogen or a C1-6 alkoxy group optionally substituted by halogen, R4 and R6 are each a hydrogen atom, a halogen atom or a C1-6 alkyl group optionally substituted by halogen, R5 is a hydrogen atom, a halogen atom, a C1-6 alkyl group optionally substituted by halogen or a C1-6 alkoxy group optionally substituted by halogen, and R7 is a hydrogen atom or a C1-6 alkyl group optionally substituted by halogen or a salt thereof, or a pharmaceutical composition containing the same.
Promoting Effect of Crystal Water Leading to Catalyst-Free Synthesis of Heteroaryl Thioether from Heteroaryl Chloride, Sodium Thiosulfate Pentahydrate, and Alcohol
作者:Xiantao Ma、Jing Yu、Ran Yan、Mengli Yan、Qing Xu
DOI:10.1021/acs.joc.9b01670
日期:2019.9.6
can promote its multicomponent reaction with heteroaryl chlorides and alcohols, providing a facile, green, and specific synthesis of unsymmetrical heteroaryl thioethers via one-step formation of two C–S bonds under catalyst-, additive-, and solvent-free conditions. Mechanistic studies suggest that the crystal water in Na2S2O3·5H2O is crucial in generating the key thiol intermediates and byproduct NaHSO4
观察到五水硫代硫酸钠(Na 2 S 2 O 3 ·5H 2 O)中的结晶水可以促进其与杂芳基氯化物和醇类的多组分反应,从而一步一步提供了一种不对称的杂芳基硫醚的简便,绿色且特异的合成方法在无催化剂,无添加剂和无溶剂的条件下形成两个C–S键。机理研究表明,Na 2 S 2 O 3 ·5H 2 O中的结晶水对于生成关键的硫醇中间体和副产物NaHSO 4至关重要,后者可以催化醇被硫醇的脱水取代,从而制得硫醚。
Efficient Generation of C-S Bonds<i>via</i>a By-Product-Promoted Selective Coupling of Alcohols, Organic Halides, and Thiourea
alcohols, heteroaryl halides, and thiourea has been developed for direct and selective synthesis of heteroaryl thioethers. This method can be easily scaled up to the gram scale and extended to dialkyl thioethers, heteroaryl selenides, benzothiazoles, and some antimycobacterially‐active thioethers. Mechanisticstudies revealed that a by‐product‐promoted in situ C–O activation of alcohols to more reactive
The present invention relates to a compound represented by the formula:
wherein A is pyridyl group having at least one substituent
wherein R
1
, R
2
and R
3
are each a hydrogen atom, a halogen atom, a C
1-6
alkyl group optionally substituted by halogen or a C
1-6
alkoxy group optionally substituted by halogen, R
4
and R
6
are each a hydrogen atom, a halogen atom or a C
1-6
alkyl group optionally substituted by halogen, R
5
is a hydrogen atom, a halogen atom, a C
1-6
alkyl group optionally substituted by halogen or a C
1-6
alkoxy group optionally substituted by halogen, and R
7
is a hydrogen atom or a C
1-6
alkyl group optionally substituted by halogen or a salt thereof, or a pharmaceutical composition containing the same.