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首页> 外文期刊>Analytical Sciences >Ion-responsive Intramolecular Charge-transfer Absorption Using a Pyridinium Benzocrown Ether Conjugate
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Ion-responsive Intramolecular Charge-transfer Absorption Using a Pyridinium Benzocrown Ether Conjugate

机译:使用吡啶鎓苯并冠醚共轭物的离子响应性分子内电荷转移吸收

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A pyridinium benzocrown ether conjugated compound, 1, and its analogue with a non-crown ether unit, 2, have been prepared. Both compounds showed similar absorption spectra with two absorption bands at around 260 and 330 nm in acetonitrile. The bands at the longer wavelength side are associated with intramolecular charge transfer (ICT) absorption, in which the dialkoxyphenyl unit in benzocrown ether and the pyridinium unit act as the donor and acceptor, respectively. The addition of a guest, such as Li+ or Mg2+, caused a blue shift in the ICT absorption band for 1, but not for 2. This is explained by the formation of a 1:1 host-guest inclusion complex of 1 with the guest. The guest-induced absorption variation of 1 can be used for alkali and alkaline metal ion sensing. Compound 1 could detect divalent cations, especially for Mg2+, rather than univalent ones (Li+, Na+, K+, Rb+, and Cs+), although Li+ was detected with high sensitivity among the alkali metal ions. Compound 3, which has a pyridyl unit at the para position on the pyridinium of 1, showed a similar trend to that of 1 with lower sensitivity than that of 1. The fact that the Mg2+/Li+ sensitivity ratio of 1 and 3 was estimated to be 8.63 and 5.08, respectively, suggests a higher Mg2+-preference of 1 rather than 3, while the Ca2+/Na+ ones were 4.98 and 4.85, respectively, when compared ions with similar ionic radii. The sensitivity values of 1 were roughly proportional to their binding constants, as shown by the binding constants with Li+, Na+, Mg2+, and Ca2+ with values of 2100, 910, 11500, and 2000 M−1 for 1, respectively. The binding constants of 3 were estimated to be 1710, 650, 3000, and 1400 M−1 for Li+, Na+, Mg2+, and Ca2+, respectively, but could not be obtained for alkaline metal ions. The limit concentration for the detection of 1 for Mg2+ was estimated to be 0.0156 mM, which was the smallest value in this system.
机译:已经制备了吡啶鎓苯并冠醚共轭化合物1及其具有非冠醚单元的类似物2。两种化合物在乙腈中均显示相似的吸收光谱,在260和330 nm处有两个吸收带。较长波长侧的谱带与分子内电荷转移(ICT)吸收相关,其中苯并冠醚中的二烷氧基苯基单元和吡啶鎓单元分别充当供体和受体。客体(例如Li +或Mg2 +)的添加导致ICT吸收谱带发生蓝移,而不是2。这可以通过与客体形成1的1:1客体-客体包合复合体来解释。 。客体引起的吸收变化1可以用于碱金属和碱金属离子感测。化合物1可以检测到二价阳离子,特别是对于Mg2 +,而不是一价阳离子(Li +,Na +,K +,Rb +和Cs +),尽管在碱金属离子中检测到Li +的灵敏度很高。在吡啶鎓的对位为1的吡啶基单元3的化合物3显示出与1相似的趋势,但其灵敏度低于1。Mg2+ / Li +的灵敏度比为1和3估计为分别为8.63和5.08时,与具有类似离子半径的离子相比,Mg2 +的优先级为1,而不是3,而Ca2 + / Na +的优先级分别为4.98和4.85。灵敏度值1与它们的结合常数大致成正比,如与Li +,Na +,Mg2 +和Ca2 +的结合常数分别为2100、910、11500和2000 M-1所表示。 Li +,Na +,Mg2 +和Ca2 +的结合常数3估计分别为1710、650、3000和1400 M-1,但对于碱金属离子则无法获得。用于检测Mg2 +的1的极限浓度估计为0.0156 mM,这是该系统中的最小值。

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