Catalyst-free synthesis of hydrazino-containing glycine derivatives via a diaziridine in situ formation/ring-opening cascade†

IF 9.3 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Green Chemistry Pub Date : 2024-08-12 DOI:10.1039/d4gc02565b
Chang-Long Rong , Qiang-Qiang Li , Jun Xuan
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引用次数: 0

Abstract

Glycine derivatives are prevalent structural motifs that can be easily found in many bioactive molecules and natural isolates. To date, chemical synthesis of hydrazino-containing glycine derivatives has mainly focused on the utilization of metal catalysts or light-irradiation methods. Herein, we report a three-component reaction of amines, azodicarboxylates, and diazoalkanes under green and sustainable reaction conditions, leading to a wide range of hydrazino-containing glycine derivatives in good to excellent yields. Compared to the reported methods, the as-developed method does not require catalysts or light irradiation. The success of the scale-up reaction, synthetic transformation of the formed glycine products, and the direct aqueous media synthesis further rendered the method attractive and valuable. Control experiments together with detailed mechanism studies revealed that the in situ formed diaziridines are the key reaction intermediates.

Abstract Image

Abstract Image

通过重氮丙啶原位形成/开环级联无催化剂合成含肼甘氨酸衍生物
甘氨酸衍生物是许多生物活性分子和天然分离物中常见的结构基团。迄今为止,含肼甘氨酸衍生物的化学合成主要集中在利用金属催化剂或光照射方法。在此,我们报告了在绿色、可持续的反应条件下,胺、偶氮二甲酸酯和重氮烷烃的三组分反应,从而以良好至优异的收率获得了多种含肼甘氨酸衍生物。与已报道的方法相比,所开发的方法不需要催化剂或光照射。成功的放大反应、形成的甘氨酸产物的合成转化以及直接的水介质合成进一步增强了该方法的吸引力和价值。对照实验和详细的机理研究表明,原位形成的二氮丙啶是关键的反应中间体。
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来源期刊
Green Chemistry
Green Chemistry 化学-化学综合
CiteScore
16.10
自引率
7.10%
发文量
677
审稿时长
1.4 months
期刊介绍: Green Chemistry is a journal that provides a unique forum for the publication of innovative research on the development of alternative green and sustainable technologies. The scope of Green Chemistry is based on the definition proposed by Anastas and Warner (Green Chemistry: Theory and Practice, P T Anastas and J C Warner, Oxford University Press, Oxford, 1998), which defines green chemistry as the utilisation of a set of principles that reduces or eliminates the use or generation of hazardous substances in the design, manufacture and application of chemical products. Green Chemistry aims to reduce the environmental impact of the chemical enterprise by developing a technology base that is inherently non-toxic to living things and the environment. The journal welcomes submissions on all aspects of research relating to this endeavor and publishes original and significant cutting-edge research that is likely to be of wide general appeal. For a work to be published, it must present a significant advance in green chemistry, including a comparison with existing methods and a demonstration of advantages over those methods.
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