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Eco-Mn Ecocatalysts: Toolbox for Sustainable and Green Lewis Acid Catalysis and Oxidation Reactions

机译:Eco-Mn Ecocatalysts:可持续和绿色路易斯酸催化和氧化反应的工具箱

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摘要

Phytoextraction is one of the most promising phytotechnologies used to restore natural environments degraded by mining activities. In New Caledonia, a few plant species, which belong to the Grevillea genus, have the ability to extract Mn from soil and accumulate it in abundance (over 1 % of leaves dry weight). This review describes the use of Grevillea Mn-accumulating plant species to produce the first bio-sourced Mn catalysts, called Eco-Mn catalysts. Extensive structural studies of Eco-Mn catalysts have highlighted an original composition characteristic of their vegetal origin. Eco-Mn catalysts have demonstrated competitive catalytic activities compared to conventional Mn catalysts in Lewis acid catalysis, aminoreductions, alcohol oxidations, epoxidation reactions, oxidative cleavage of 1,2-diols and alkenes and "Janus catalysts" for sequential tandem oxidations such as tandem carbonyl-ene cyclisation, synthesis of substituted pyridines and oxidative iodination of ketones.
机译:植物申请是用于恢复通过采矿活动退化的自然环境最有前途的植物技术之一。 在新的喀里多尼亚,属于Grevillea属的少数植物物种具有从土壤中提取Mn并在丰度(超过1%的叶子干重)中累积。 该综述描述了Grevillea MN积累植物物种的用途生产第一生物源MN催化剂,称为Eco-Mn催化剂。 Eco-Mn催化剂的广泛结构研究突出了其植物来源的原始组合物特征。 与路易斯酸催化剂,含量的Mn催化剂,氨基酸催化剂,氨化量,醇氧化,环氧化反应,1,2-二醇和烯烃的氧化切割和“Janus催化剂”和“Janus催化剂”相比表现出具有竞争性的催化活性,用于连续串联氧化如串联羰基 - 酮环化,合成取代的吡啶和酮氧化碘化酮。

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