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Calix[4]arene-Based Bis(Nitric Oxide) Complexes: Synthesis, Physical Properties, and Structural Characterization

机译:CALIX [4]基于芳烃的双(一氧化氮)复合物:合成,物理性质和结构表征

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Calix[4]arene-based molecules hold great promise as candidate sensors and storage materials for nitric oxide (NO), owing to their unprecedented binding affinity for NO. However, the structure of calix[4]arene is complicated by the availability of four possible conformers: 1,3-alternate, 1,2-alternate, cone, and partial cone (paco). Whilst complexes of NO with several of these conformers have previously been established, the 1,2-alternate conformer complex, that is, [1,2-alter NO](+), has not been previously reported. Herein, we determine the crystal structure of the NO complex with the 1,2-alternate conformer for the first time. In addition, we have also found that the 1,2-alternate and 1,3-alternate conformers can combine with two NO molecules to form stable bis(nitric oxide) complexes. These new complexes, which exhibit remarkable binding capacity for the construction of NO-storage molecules, were characterized by using X-ray crystallography and NMR, IR, and UV/Vis spectroscopy. These findings will extend our understanding of the interactions between nitric oxide and cofacially and non-cofacially arrayed aromatic rings, and we expect them to aid in the design and development of new supramolecular sensors and storage materials for NO with high capacity and efficacy.
机译:Calix [4]基于arene的分子作为候选传感器和储存材料的一氧化氮(否),由于其前所未有的结合亲和力。然而,CALIX [4]芳烃的结构通过四种可能的甲烯的可用性而复杂化:1,3-替换,1,2-交替,锥形和部分锥形(PACO)。虽然先前已经建立了几种这些整形剂中的含量的络合物,但先前尚未报道1,2-交替化体复合物,即[1,2-ALTER NO](+)。在此,我们首次确定与1,2-交替化蜂窝形式的NO复合物的晶体结构。此外,我们还发现1,2-替代和1,3-替代的塑壳可以与两个没有分子组合以形成稳定的双(一氧化氮)配合物。通过使用X射线晶体学和NMR,IR和UV / VI光谱,表征了这些新的复合物,其表现出用于构建无储存分子的非储存分子的结合能力。这些发现将延长我们对一氧化氮和COFAcially和非COFACIELSELSENDED芳环之间的相互作用的理解,并且我们希望它们有助于设计和开发新的超分子传感器和储存材料,不具有高容量和功效。

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