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Benzobis(imidazolium)–Cucurbit[8]uril Complexes for Binding and Sensing Aromatic Compounds in Aqueous Solution

机译:苯并双(咪唑鎓)-葫芦[8]尿嘧啶配合物在水溶液中的结合和传感

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The utilities of benzobis(imidazolium) salts (BBIs) as stable and fluorescent components of supramolecular assemblies involving the macrocyclic host, cucurbit[8]uril (CB[8]), are described. CB[8] has the unusual ability to bind tightly and selectively to two different guests in aqueous media, typically methyl viologen (MV) as the first guest, followed by an indole, naphthalene, or catechol-containing second guest. Based on similar size, shape, and charge, tetramethyl benzobis(imidazolium) (MBBI) was identified as a potential alternative to MV that would increase the repertoire of guests for cucurbit[8]uril. Isothermal titration calorimetry (ITC) studies showed that MBBI binds to CB[8] in a 1:1 ratio with an equilibrium association constant (Ka) value of 5.7×105 M−1, and that the resulting MBBICB[8] complex binds to a series of aromatic second guests with Ka values ranging from 103 to 105 M−1. These complexation phenomena were supported by mass spectrometry, which confirmed complex formation, and a series of NMR studies that showed the expected upfield perturbation of aromatic peaks and of the MBBI methyl peaks. Surprisingly, the binding behavior of MBBI is strikingly similar to that of MV, and yet MBBI offers a number of substantial advantages for many applications, including intrinsic fluorescence, high chemical stability, and broad synthetic tunability. Indeed, the intense fluorescence emission of the MBBICB[8] complex was quenched upon binding to the second guests, thus demonstrating the utility of MBBI as a component for optical sensing. Building on these favorable properties, the MBBICB[8] system was successfully applied to the sequence-selective recognition of peptides as well as the controlled disassembly of polymer aggregates in water. These results broaden the available guests for the cucurbit[n]uril family and demonstrate potentially new applications.
机译:描述了苯并双(咪唑鎓)盐(BBI)作为涉及大环主体葫芦[8]尿嘧啶(CB [8])的超分子组装的稳定和荧光组分的用途。 CB [8]具有非同寻常的能力,能够与水性介质中的两个不同来宾紧密结合并选择性结合,通常是甲基紫精(MV)作为第一来宾,然后是吲哚,萘或邻苯二酚。基于相似的大小,形状和电荷,四甲基苯并双(咪唑鎓)(MBBI)被认为是MV的潜在替代品,可以增加来宾的葫芦库[8] uril。等温滴定热法(ITC)研究表明,MBBI以1:1的比例与CB [8]结合,平衡缔合常数(K a )值为5.7×10 5 M −1 ,并且生成的MBBICB [8]络合物以K a 值为10 3 到10 5 M −1 。这些络合现象得到了质谱的证实,质谱证实了络合物的形成,一系列的NMR研究表明,预期的芳香族峰和MBBI甲基峰的高场扰动。出乎意料的是,MBBI的结合行为与MV非常相似,但是MBBI为许多应用提供了许多实质性优势,包括固有荧光,高化学稳定性和广泛的合成可调性。的确,MBBICB [8]复合物的强荧光发射在与第二个客人结合后被猝灭,从而证明了MBBI作为光学传感组件的效用。基于这些良好的性能,MBBICB [8]系统已成功应用于肽的序列选择性识别以及水中聚合物聚集体的可控分解。这些结果拓宽了瓜葫芦系列产品的潜在客户,并展示了潜在的新应用。

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