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Effect of photoirradiation on chromatographic separation of alkali metal ions using crowned-spirobenzopyran-immobilized silica

机译:冠状螺并苯并吡喃固定化二氧化硅对光辐照对碱金属离子色谱分离的影响

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We successfully developed a novel photocontrollable chromatographic system for separation of alkali metal ions. Based on the finding that the metal-ion complexation of spirobenzopyran derivatives bearing a crown ether moiety, which we call crowned spirobenzopyran, can be drastically changed by photoirradiation, crowned spirobenzopyrans were immobilized covalently onto silica gels for stationary phases of ion chromatography. Under dark or UV-light irradiation conditions, a marked separation between Li~+ and K~+ was attained by silica gels modified chemically with crowned spirobenzopyran bearing an 18-crown-6 ring. On the other hand, no significant separation between the two metal ions was found under visible-light irradiation conditions. This result originates from the fact that the K~+-complexing ability of crowned-spirobenzopyran-immobilized silica is switched by photoisomerization of the spirobenzopyran moiety from its merocyanine form to spiropyran form. Furthermore, computer simulations of separation of alkali metal ions by crowned spirobenzopyrans in the silica phase were conducted using molecular dynamics calculations.
机译:我们成功开发了一种用于分离碱金属离子的新型光控色谱系统。基于这一发现,带有冠醚部分的螺并苯并吡喃衍生物的金属离子络合物(我们称为加冠的螺并苯并吡喃)可以通过光辐照彻底改变,将加冠的螺并苯并吡喃共价固定在硅胶上进行离子色谱固定相。在暗或紫外光照射条件下,通过化学修饰的带有冠状螺并苯并吡喃并带有18冠6环的硅胶,可以实现Li〜+和K〜+之间的明显分离。另一方面,在可见光照射条件下,未发现两种金属离子之间的明显分离。该结果源于以下事实:通过将螺并苯并吡喃部分从其花菁形式变为螺并吡喃形式,冠状螺并苯并吡喃固定的二氧化硅的K +络合能力被切换。此外,使用分子动力学计算进行了冠状螺旋苯并吡喃在硅胶相中分离碱金属离子的计算机模拟。

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