Sakamoto Hidefumi, Yokohata Takashi, Yamamura Tsuyoshi, Kimura Keiichi
Department of Applied Chemistry, Faculty of Systems Enginnering, Wakayama University, Sakae-dani, Japan.
Anal Chem. 2002 Jun 1;74(11):2522-8. doi: 10.1021/ac020003p.
On the liquid-liquid extraction using 1,2-dichloroethane as an organic solvent, the crowned spirobenzopyrans exhibited textractability in the following order: Li+ >> Na+ > K+ > or = tetramethylammonium ion (TMA+), Li+ > Na+ >> K+ > TMA+, and Na+ > K+ >> Li+ > TMA+ for spirobenzopyran derivatives bearing monoaza-12-crown-4, 1; monoaza-15-crown-5, 2; and monoaza-18-crown-6, 3; respectively, under dark conditions. The ion selectivity of 1 depends on the metal-ion complexing ability of monoaza-12-crown-4. Even 2, which carries a 15-crown-5 moiety, showed Li+ selectivity because of the much stronger interaction of Li+ with the phenolate ion of the merocyanine form of 2 than that of Na+. The Na+ selectivity of 3 is also attributed to the ionic interaction with the phenolate ion of the merocyanine form, since the ionic interaction prefers Na+ to K+ regardless of the higher affinity of the 18-crown-6 ring itself to the latter ion. The Li+ extraction into the organic phase with 1 was enhanced by UV irradiation (300-400 nm), while some depression in the extraction was found by visible irradiation (>500 nm). The effect of visible irradiation on the Li+ complexing ability of 1 was also examined with electrospray ionization mass spectrometry.
在以1,2 - 二氯乙烷为有机溶剂的液 - 液萃取中,冠醚化螺苯并吡喃的萃取能力呈现以下顺序:对于分别带有单氮杂 - 12 - 冠 - 4(1)、单氮杂 - 15 - 冠 - 5(2)和单氮杂 - 18 - 冠 - 6(3)的螺苯并吡喃衍生物,在黑暗条件下,Li⁺ >> Na⁺ > K⁺ ≥ 四甲基铵离子(TMA⁺),Li⁺ > Na⁺ >> K⁺ > TMA⁺,以及Na⁺ > K⁺ >> Li⁺ > TMA⁺。1的离子选择性取决于单氮杂 - 12 - 冠 - 4的金属离子络合能力。即使是带有15 - 冠 - 5部分的2,也表现出Li⁺选择性,这是因为Li⁺与2的部花青形式的酚盐离子之间的相互作用比Na⁺与该酚盐离子之间的相互作用要强得多。3对Na⁺的选择性也归因于与部花青形式的酚盐离子的离子相互作用,因为尽管18 - 冠 - 6环本身对K⁺具有更高的亲和力,但离子相互作用更倾向于Na⁺。用1将Li⁺萃取到有机相的过程在紫外光照射(300 - 400 nm)下得到增强,而在可见光照射(>500 nm)下发现萃取有所降低。还用电喷雾电离质谱法研究了可见光照射对1的Li⁺络合能力的影响。