A review on C-P bonding reactions assisted by manganese(III) acetate

Emre Biçer
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引用次数: 2

Abstract

Abstract This review aims to review the published articles involved with manganese(III) acetate based free radical additions to organic compounds to obtain organophosphorus compounds. As well known, manganese(III) acetate is a long-term initiator used by chemists to form a variety of compounds. Manganese(III) initiated phosphorus-centered radicals which undergo homolytic cleavage of the P-H bond. In follow-up reactions, an addition to unsaturated compounds leads to a wide range of valuable organophosphorus compounds. Based upon the phosphorus reagent, two types of P-centered radicals are formed: Phosphinoyl-radicals result from phosphites and phosphonyl-radicals result from phosphate reagents. According to research results on P-centered radicals, phosphonyl-radicals are more reactive than phosphinoyl radicals. By use of these radicals, many phosphorylated products have been obtained with relatively high yields. The phosphates obtained by radical addition can be used as intermediates to valuable products in organic chemistry, medicinal chemistry, crop science and material chemistry. Graphical Abstract
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醋酸锰辅助C-P键合反应研究进展
摘要本文综述了近年来以醋酸锰(III)自由基为基础,在有机化合物中添加有机磷化合物的研究进展。众所周知,醋酸锰(III)是化学家用来形成各种化合物的长期引发剂。锰(III)引发以磷为中心的自由基进行P-H键的均裂裂解。在后续的反应中,对不饱和化合物的添加会产生一系列有价值的有机磷化合物。在磷试剂的基础上,形成了两种以p为中心的自由基:由亚磷酸盐产生的磷酰基自由基和由磷酸盐产生的磷酰基自由基。根据对p中心自由基的研究结果,磷酰自由基比磷酰自由基更具活性。通过使用这些自由基,许多磷酸化产物得到了相对较高的收率。自由基加成得到的磷酸盐可作为有机化学、药物化学、作物科学和材料化学等有价值产品的中间体。图形抽象
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