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首页> 外文期刊>RSC Advances >Synthesis of an optically switchable salicylaldimine substituted naphthopyran for selective and reversible Cu2+ recognition in aqueous solution
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Synthesis of an optically switchable salicylaldimine substituted naphthopyran for selective and reversible Cu2+ recognition in aqueous solution

机译:光学可转换的水杨醛亚胺取代的萘并吡喃的合成,用于水溶液中的选择性和可逆性识别Cu2 +

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A light controlled reversible switch for copper ion was synthesized by substituting photochromic naphthopyran with a salicylaldimine moiety. The naphthopyran based photoreversible receptor was characterized using IR, NMR, HRMS and single crystal X-ray crystallographic techniques. The photochromic properties of the receptor under light irradiation were investigated by UV-visible spectroscopy. The affinity towards transition metal ions in both closed and open forms were determined. The open form of the receptor displayed an increased affinity towards copper ions. A 3.25 x 10(4) fold difference in binding affinity for copper ions between the closed and open forms in aqueous methanol solution suggested that the receptor can act as a selective photoswitch for copper ions. Theoretical investigations at the molecular level supported the experimental observations.
机译:通过用水杨醛亚胺部分取代光致变色萘并吡喃来合成铜离子的光控可逆开关。使用IR,NMR,HRMS和单晶X射线晶体学技术对基于萘并吡喃的光可逆受体进行了表征。通过UV-可见光谱研究了在光照射下受体的光致变色性质。确定了对封闭和开放形式的过渡金属离子的亲和力。受体的开放形式表现出对铜离子的增加的亲和力。在甲醇水溶液中,封闭形式和开放形式之间对铜离子的结合亲和力存在3.25 x 10(4)倍的差异,表明该受体可以充当铜离子的选择性光开关。在分子水平上的理论研究支持了实验观察。

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