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揭开烯丙基催化环加成反应的化学与合成潜力:综述。

Unveiling the Chemistry and Synthetic Potential of Catalytic Cycloaddition Reaction of Allenes: A Review.

机构信息

Department of Chemistry, Government College University Faisalabad, Faisalabad 38000, Pakistan.

Department of Biochemistry, Government College University Faisalabad, Faisalabad 38000, Pakistan.

出版信息

Molecules. 2023 Jan 10;28(2):704. doi: 10.3390/molecules28020704.

Abstract

Allenes with two carbon-carbon double bonds belong to a unique class of unsaturated hydrocarbons. The central carbon atom of allene is sp hybridized and forms two σ-bonds and two π-bonds with two terminal sp hybridized carbon atoms. The chemistry of allenes has been well documented over the last decades. They are more reactive than alkenes due to higher strain and exhibit significant axial chirality, thus playing a vital role in asymmetric synthesis. Over a variety of organic transformations, allenes specifically undergo classical metal catalyzed cycloaddition reactions to obtain chemo-, regio- and stereoselective cycloadducts. This review briefly describes different types of annulations including [2+2], [2+2+1], [3+2], [2+2+2], [4+2], [5+2], [6+2] cycloadditions using titanium, cobalt, rhodium, nickel, palladium, platinum, gold and phosphine catalyzed reactions along with a mechanistic study of some highlighted protocols. The synthetic applications of these reactions towards the synthesis of natural products such as aristeromycin, -[3]-ladderanol, waihoensene(-)-vindoline and (+)-4--vindoline have also been described.

摘要

二碳-碳双键的丙二烯属于一类独特的不饱和烃。丙二烯的中心碳原子为 sp 杂化,与两个末端 sp 杂化碳原子形成两个σ键和两个π键。过去几十年中,丙二烯的化学性质已有详细记载。由于应变较大,它们比烯烃更具反应性,并表现出显著的轴向手性,因此在不对称合成中起着至关重要的作用。在各种有机转化中,丙二烯特别经历经典的金属催化环加成反应,以获得化学、区域和立体选择性的环加成产物。本文简要描述了不同类型的环化反应,包括使用钛、钴、铑、镍、钯、铂、金和膦催化反应的[2+2]、[2+2+1]、[3+2]、[2+2+2]、[4+2]、[5+2]、[6+2]环加成反应,并对一些突出的方案进行了机理研究。这些反应在合成天然产物方面的应用,如阿利斯特霉素、-[3]-拉得醇、waihoensene(-)-vindoline 和 (+)-4--vindoline,也已被描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5710/9860688/3c7a4862aff3/molecules-28-00704-sch001.jpg

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