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首页> 外文期刊>Nature Communications >Adaptive self-assembly and induced-fit transformations of anion-binding metal-organic macrocycles
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Adaptive self-assembly and induced-fit transformations of anion-binding metal-organic macrocycles

机译:阴离子结合金属有机大环的自适应自组装和诱导拟合转换

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摘要

Container-molecules are attractive to chemists due to their unique structural characteristics comparable to enzymes and receptors in nature. We report here a family of artificial self-assembled macrocyclic containers that feature induced-fit transformations in response to different anionic guests. Five metal-organic macrocycles with empirical formula of M n L2 n (M=Metal; L=Ligand; n =3, 4, 5, 6, 7) are selectively obtained starting from one simple benzimidazole-based ligand and square-planar palladium(II) ions, either by direct anion-adaptive self-assembly or induced-fit transformations. Hydrogen-bonding interactions between the inner surface of the macrocycles and the anionic guests dictate the shape and size of the product. A comprehensive induced-fit transformation map across all the M n L2 n species is drawn, with a representative reconstitution process from Pd7L14 to Pd3L6 traced in detail, revealing a gradual ring-shrinking mechanism. We envisage that these macrocyclic molecules with adjustable well-defined hydrogen-bonding pockets will find wide applications in molecular sensing or catalysis.
机译:容器分子因其与自然界中的酶和受体相当的独特结构特征而对化学家具有吸引力。我们在这里报告了一系列人工自组装的大环容器,这些容器的特征在于对不同阴离子客体的适应诱导转变。五个经验公式为M n L 2 n 的金属有机大环(M =金属; L =配体; n = 3、4、5、6、7)是从一种简单的基于苯并咪唑的配体和直角平面钯(II)离子开始,通过直接阴离子自适应自组装或诱导拟合转化,选择性地获得。大环内表面与阴离子客体之间的氢键相互作用决定了产物的形状和大小。绘制了所有M n L 2 n 物种的综合归因拟合转化图,并从Pd 7 L <对sub> 14 到Pd 3 L 6 进行了详细跟踪,揭示了渐进的环收缩机制。我们设想这些具有可调节的定义良好的氢键口袋的大环分子将在分子传感或催化中找到广泛的应用。

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