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A Strategy for Controlling the Central Torsion Angle in Biphenyl-Based Molecular-Scale Bridges

机译:联苯基分子尺度桥的中心扭转角控制策略

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The synthesis of a series of crown ether ligands (C4-C6) based upon the 2,2'-biphenyl unit is described.In the series,the length of the polyether chain connecting the two oxygen atoms increases progressively.These polyethers are moderately fluorescent in acetonitrile solution,but this emission is partially quenched upon the addition of various alkali metal cations.Spectrofluorimetric titrations performed with MClO_4 (M = Li~+,Na~+) or KPF_6 show that binding to crown ethers C4-C6 involves the formation of a 1:1 cation/ligand complex.The geometry of the resultant complex depends on the nature of the bound cation and also on ionic strength.In particular,the photophysical properties of the polyether are sensitive to the torsion angle around the central connector in the biphenyl group.This approach,therefore,could be used to systematically vary the dihedral angle for biphenyl-based molecular-scale bridges.
机译:描述了基于2,2'-联苯单元的一系列冠醚配体(C4-C6)的合成。在该系列中,连接两个氧原子的聚醚链的长度逐渐增加。这些聚醚具有中等荧光性在乙腈溶液中,但通过加入各种碱金属阳离子可部分消除这种排放。用MClO_4(M = Li〜+,Na〜+)或KPF_6进行的分光荧光滴定表明与冠醚C4-C6的结合涉及1:1阳离子/配体配合物。最终配合物的几何形状取决于结合的阳离子的性质以及离子强度。特别是,聚醚的光物理性质对围绕中心连接器的扭转角敏感因此,该方法可用于系统性地改变基于联苯的分子级桥的二面角。

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