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按需在连续流条件下合成有机卤化锌。

On-demand synthesis of organozinc halides under continuous flow conditions.

机构信息

Lead Discovery, Janssen Research and Development, Janssen-Cilag, S.A., Toledo, Spain.

Facultad de Ciencias Químicas, Universidad de Castilla-La Mancha, Ciudad Real, Spain.

出版信息

Nat Protoc. 2018 Jan;13(1):324-334. doi: 10.1038/nprot.2017.141. Epub 2018 Jan 11.

DOI:10.1038/nprot.2017.141
PMID:29323664
Abstract

Organozinc reagents are versatile building blocks for introducing C(sp)-C(sp) and C(sp)-C(sp) bonds into organic structures. However, despite their ample synthetic versatility and broad functional group tolerance, the use of organozinc reagents in the laboratory is limited because of their instability, exothermicity and water sensitivity, as well as their labor-intensive preparation. Herein, we describe an on-demand synthesis of these useful reagents under continuous flow conditions, overcoming these primary limitations and supporting widespread adoption of these reagents in synthetic organic chemistry. To exemplify this procedure, a solution of ethyl zincbromoacetate is prepared by flowing ethyl bromoacetate through a column containing metallic zinc. The temperature of the column is controlled by a heating jacket and a thermocouple in close contact with it. Advice on how to perform the procedure using alternative equipment is also given to allow a wider access to the methodology. Here we describe the preparation of 50 ml of solution, which takes 1 h 40 min, although up to 250-300 ml can be prepared with the same column setup at a rate of 30 ml per h. The procedure provides the reagent as a clean solution with reproducible concentration. Organozinc solutions generated in flow can be coupled to a second flow reactor to perform a Reformatsky reaction or can be collected over a flask containing the required reagents for a batch Negishi reaction.

摘要

有机锌试剂是引入 C(sp)-C(sp) 和 C(sp)-C(sp) 键到有机结构中的多功能构建块。然而,尽管它们具有广泛的合成多功能性和广泛的官能团耐受性,但由于其不稳定性、放热性和对水的敏感性以及其劳动强度大的制备,它们在实验室中的使用受到限制。在此,我们描述了在连续流动条件下按需合成这些有用试剂的方法,克服了这些主要限制,并支持在合成有机化学中广泛采用这些试剂。为了举例说明该程序,通过将乙基溴乙酸酯流经含有金属锌的柱来制备乙基锌溴乙酸酯溶液。通过与柱紧密接触的加热套和热电偶来控制柱的温度。还提供了使用替代设备执行该程序的建议,以允许更广泛地使用该方法。在这里,我们描述了制备 50 毫升溶液的过程,该过程需要 1 小时 40 分钟,尽管使用相同的柱设置可以以 30 毫升/小时的速度制备多达 250-300 毫升的溶液。该程序提供了具有可重复浓度的清洁溶液形式的试剂。在流动中生成的有机锌溶液可以与第二个流动反应器偶联以进行 Reformatsky 反应,或者可以在含有所需试剂的烧瓶中收集,以进行批量 Negishi 反应。

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