首页> 外文期刊>Chemistry: A European journal >A 1,3-Capped Calix[4] Conjugate Possessing an Amine Moiety as an Anion Receptor: Reversible Anion Sensing Detected by Spectroscopy and Characterization of the Supramolecular Features by Microscopy
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A 1,3-Capped Calix[4] Conjugate Possessing an Amine Moiety as an Anion Receptor: Reversible Anion Sensing Detected by Spectroscopy and Characterization of the Supramolecular Features by Microscopy

机译:具有胺部分作为阴离子受体的1,3盖杯[4]共轭物:可逆阴离子感测通过光谱法检测和通过显微镜表征超分子特征

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A phenylenediamine-capped conjugate of calix[ 4]arene (L-amino) was synthesized by reducing its precursor, L-imino, with sodium borohydride in methanol. The L-amino sample binds to anions due to the more flexible and bent conformation of the capped aminophenolic binding core, compared to the precursor L-imino. The L-amino sample showed selectivity towards H2PO4- by exhibiting a ratiometric increase in emission by about 11-fold with a detection limit of (1.2 +/- 0.2) mu m ((116 +/- 20) ppb) over 15 anions studied, including other phosphates, such as P2O74-, adenosine monophosphate (AMP(2-)), adenosine diphosphate (ADP(2-)), and adenosine triphosphate (ATP(2-)). The L-amino sample shows an increase in the absorbance at lambda = 315 nm in the presence of H2PO4-, CO32-, HCO3-, CH3CO2-, and F-. The H-1 NMR spectroscopic titration of L-amino with H2PO4-, F-, and CH3CO2- showed major changes in the phenylene-capped and salicyl moieties, and thereby, confirming the aminophenolic region as the binding core. However, the binding strength of these anions followed the trend H2PO4- > F- CH3CO2- > HSO4-. The heat changes observed by isothermal titration calorimetry support this trend. The L-amino sample showed reversible sensing towards H2PO4- and F- in the presence of Mg2+ and Ca2+, respectively. NOESY studies of L-amino, in comparison with its anionic complexes, revealed that major conformational changes occurred in the capping region to facilitate the binding of anion. ESI-MS and the Job's method revealed 1: 1 stoichiometry between L-amino and H2PO4- or F-. In the SEM micrographs of L-amino, the spherical particles are converted into spherical aggregates and further form large agglomerates and even branched sheets in the presence of anions, depending upon their binding strength.
机译:通过在甲醇中用硼氢化钠还原其前体L-亚氨基来合成杯芳烃[4]亚芳基(L-氨基)的苯二胺封端的共轭物。与前体L-亚氨基相比,由于封端的氨基酚结合核的柔性和弯曲构象,L-氨基样品与阴离子结合。 L-氨基样品显示出对H2PO4-的选择性,通过在15个阴离子上显示出比例增加的排放量约11倍,检测限为(1.2 +/- 0.2)微米((116 +/- 20)ppb)。包括其他磷酸盐,例如P2O74-,单磷酸腺苷(AMP(2-)),二磷酸腺苷(ADP(2-))和三磷酸腺苷(ATP(2-))。 L-氨基样品在H2PO4-,CO32-,HCO3-,CH3CO2-和F-的存在下在λ= 315 nm处的吸光度增加。用H2PO4-,F-和CH3CO2-对L-氨基进行H-1 NMR光谱滴定表明,亚苯基封端和水杨基部分发生了重大变化,从而确认了氨基酚区域为结合核心。但是,这些阴离子的结合强度遵循H2PO4-> F- CH3CO2-> HSO4-的趋势。通过等温滴定量热法观察到的热变化支持了这种趋势。 L-氨基样品在Mg2 +和Ca2 +的存在下分别显示出对H2PO4-和F-的可逆传感。与阴离子配合物相比,L-氨基的NOESY研究表明,主要构象变化发生在封端区域,以促进阴离子的结合。 ESI-MS和Job的方法揭示了L-氨基与H2PO4-或F-之间的化学计量比为1:1。在L-氨基的SEM显微照片中,取决于它们的结合强度,球形颗粒会转变成球形聚集体,并在阴离子的存在下进一步形成大的团聚物甚至支链片。

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