Synthesis of an Anion Receptor Using 3,6-Diaminophenanthrene as a Scaffold

Molbank Pub Date : 2024-07-19 DOI:10.3390/m1853
Lau Halgreen, Hennie Valkenier
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Abstract

The synthesis of phosphate receptors represents an important avenue of research given the ubiquity of phosphate in biological and environmental systems. While many molecular scaffolds suitable for smaller anions are available either commercially or via reported synthetic routes, scaffolds suitable for larger anions such as phosphate are less common. In this work, we present a clear and straightforward synthesis of the basic molecular scaffold 3,6-diaminophenanthrene and of a novel 3,6-bisureidophenanthrene anion receptor prepared from this scaffold. Of the seven synthetic steps using readily available starting materials and reagents, only a single chromatographic purification step was required. The different interactions of the 3,6-bisureidophenanthrene-based anion receptor with phosphate and chloride are demonstrated. We expect that this convenient synthesis of the 3,6-diaminophenanthrene building block will pave the way for applications in many different fields of research, from materials science to supramolecular chemistry.
以 3,6-二氨基菲为支架合成阴离子受体
鉴于磷酸盐在生物和环境系统中无处不在,磷酸盐受体的合成是一个重要的研究方向。虽然许多适用于较小阴离子的分子支架可以通过商业途径或已报道的合成途径获得,但适用于较大阴离子(如磷酸盐)的支架却不常见。在这项工作中,我们介绍了 3,6-二氨基菲基本分子支架和由该支架制备的新型 3,6-二氨基菲阴离子受体的清晰而直接的合成方法。在使用现成的起始材料和试剂进行的七个合成步骤中,只需要一个色谱纯化步骤。我们展示了 3,6-二酮菲阴离子受体与磷酸盐和氯化物的不同相互作用。我们希望这种 3,6-二氨基菲构筑基块的便捷合成方法将为从材料科学到超分子化学等许多不同研究领域的应用铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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