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用光致变色冠醚螺苯并吡喃对碱金属离子进行液-液萃取

Liquid-liquid extraction of alkali metal ions with photochromic crowned spirobenzopyrans.

作者信息

Sakamoto Hidefumi, Yokohata Takashi, Yamamura Tsuyoshi, Kimura Keiichi

机构信息

Department of Applied Chemistry, Faculty of Systems Enginnering, Wakayama University, Sakae-dani, Japan.

出版信息

Anal Chem. 2002 Jun 1;74(11):2522-8. doi: 10.1021/ac020003p.

Abstract

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.

摘要

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。

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