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Review on High Valent Fe~(VI) (Ferrate): A Sustainable Green Oxidant in Organic Chemistry and Transformation of Pharmaceuticals

机译:高价Fe〜(VI)(高铁酸盐)的综述:有机化学和药物转化中的可持续绿色氧化剂

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Iron is the most common metal by mass on earth and represents the basic element of industrial society. The usage of iron to synthesize consumer products and to remediate environment is an attractive approach. This perspective presents applications of the high-valent iron oxo compound Fe~(VI)O4~(2-) (ferrate) in sustainable organic synthesis and treatment technology. In synthesizing organic molecules, C- H bond activation and selectivity are two basic ingredients of efficiency, which are attainable by ferrate. Examples of hydroxylation of hydrocarbons and conversion of alcohols to aldehyde/ketone are presented. In addition, many other organic molecules of amines, aniline, phenolic, and thiol functionalities can be oxidized by ferrate. This oxidation chemistry of ferrate is expedient in transforming pharmaceuticals, micropollutants in bodies of water with implications for human and ecological health. A wide range of micropollutants, which are commonly found in drinking water resources and wastewater effluents, can be efficiently oxidized by ferrate on a seconds to minutes time scale. These molecules include endocrine disruptors, antibiotics, β-blockers, antidepressants, X-ray contrast media, and cosmetic products. The reaction pathways of transformation of the studied pharmaceuticals are discussed. The results of the evaluation of toxicity of the oxidized products are given. The reduced product of ferrate is the environmentally friendly and magnetic iron(III) oxide. Ferrate, as a green molecule, has true potential in sustainable production of organics and treating emerging pollutants in water.
机译:铁是地球上最常见的金属,它代表了工业社会的基本元素。用铁来合成消费产品和改善环境是一种有吸引力的方法。该观点提出了高价铁氧代化合物Fe〜(VI)O4〜(2-)(高铁酸盐)在可持续有机合成和处理技术中的应用。在合成有机分子时,CH键的活化和选择性是效率的两个基本要素,而高铁酸盐是可以实现的。给出了烃的羟基化和醇转化为醛/酮的实例。另外,胺,苯胺,酚和硫醇官能团的许多其他有机分子可以被高铁酸盐氧化。高铁酸盐的这种氧化化学在转变药物,水体中的微污染物方面具有便利性,对人类和生态健康具有重要意义。饮用水和废水中常见的多种微量污染物可以在几秒钟到几分钟的时间内被高铁酸盐有效地氧化。这些分子包括内分泌干扰物,抗生素,β受体阻滞剂,抗抑郁药,X射线造影剂和化妆品。讨论了所研究药物转化的反应途径。给出了氧化产物毒性的评价结果​​。高铁酸盐的还原产物是环境友好的磁性氧化铁(III)。高铁酸盐作为一种绿色分子,在可持续生产有机物和处理水中新兴污染物方面具有真正的潜力。

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