CAS: 13472-61-2; 5-Iodo-2-Methoxypyridine

该化合物是一种卤化的丙烯衍生物,通常用作有机合成和制药研究的多用途中间体,其主要优点包括稳定的异狄氏替代体,它有利于相互交织的反应,如铃木或松冈竹草交接,以及一种在进一步功能化中增强再现性的甲氧组. 化合物的清晰结构和高纯度使它适合精确地修改药用化学和材料科学应用. 它与各种反应条件的兼容性以及在建立复杂的异环环框架中的作用强调了其在研究和工业环境中的效用. 建议在惰性条件下进行适当的处理以保持稳定性.

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902837-52-9 112197-15-6 13472-79-2

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上下游产品

2-choro-5-iodopyridine methyl iodide 2-aminopyridine 2-amino-5-iodopyridine 5-(benzyloxy)-2-methoxypyridine 2-(6-methoxy-pyridin-3-yl)-malonic acid diethyl ester 3,4-diphenyl-hexane

合成工艺路线路线简述

    📜2-甲氧基吡啶置于n-溴代丁二酰亚胺(Nbs),正丁基锂,异丙基氯化镁体系中,用 四氢呋喃,正己烷,乙腈 用作溶剂,化学反应 20.75H,反应生成5-碘-2-甲氧基吡啶
    参考文献:二丁基(异丙基)镁酸锂(1-)和氯化锂通过卤素-镁交换进行非低温合成功能化的2-甲氧基吡啶
    标题:二丁基(异丙基)镁酸锂(1-)和氯化锂通过卤素-镁交换进行非低温合成功能化的2-甲氧基吡啶
    摘要:使用二丁基(异丙基)镁酸锂(1-)和相应的溴或碘类似物制备在3-,5-或6-位官能化的2-甲氧基吡啶和在3-位官能化的2,6-二甲氧基吡啶.非低温条件下的氯化锂.根据在两种镁酸盐之间的选择以及反应介质中氯化锂的存在与否,对程序进行了优化. 吡啶-镁-锂-有机金属试剂
    Doi:10.1055/s-0031-1289687

    海关参考信息

    专利信息


    专利号:WO-2024185814-A1
    优先权日:2023-03-06
    标题:Method for producing aryl compound containing tritylsulfanyl group
    发明人:OKAZOE TAKASHI; NOZAKI KYOKO; GATZENMEIER Tim; LIU YUE
    权利人:AGC INC; UNIV TOKYO
    摘要:The present invention provides: a substrate for achieving the highly efficient synthesis of an aryl compound containing a tritylsulfanyl group; a method for producing a compound containing an SF 5 group using the substrate; and others. The present invention is a method for producing an aryl compound containing a tritylsulfanyl group, the method comprising thiotritylating a halogenated aryl compound represented by general formula (1) [wherein A 1 represents an aryl group that may have a substituent or a heteroaryl group that may have a substituent; and X represents a halogen atom] using [(triphenylmethyl)sulfanyl]potassium or [(triphenylmethyl)sulfanyl]sodium to produce an aryl compound containing a tritylsulfanyl group, the aryl compound being represented by general formula (2) [wherein A 1 is the same as A 1 in general formula (1); and Ph represents a phenyl group].

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    ✅ COA系统入驻 | 共享模式

    主要参考文献

    参考标题:Synthesis Of Pyridylsulfonium Salts And Their Application In The Formation Of Functionalized Bipyridines
    作者:Vincent K. Duong,Alexandra M. Horan,Eoghan M. Mcgarrigle |发布日期:2020.11.6
    摘要:Arylation Of Pyridylsulfides With Good Functional Group Tolerance Was Developed. To Demonstrate Synthetic Utility, The Resulting Pyridylsulfonium Salts Were Used In A Scalable Transition-Metal-Free Coupling Protocol, Yielding Functionalized Bipyridines With Extensive Functional Group Tolerance. This Modular Methodology Permits Selective Introduction Of Functional Groups From Commercially Available Pyridyl

    合成参考文献


    摘要:Lee, B. C.; Lin, L.; Ko, C.; Koh, M. J., Science of Synthesis: Special Topics, (2022) 1, 505.
    摘要:c E. Spinner and G.B. Yeoh. J. Chem. Soc., B 1971, 296.
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