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Conformational flexibility of xanthene-based covalently linked dimers

机译:基于氧杂蒽的共价连接的二聚体的构象灵活性

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The conformational flexibility of three covalently linked dimers consisting of two xanthene-based moieties connected by a diphenyl ether linker was studied using NMR spectroscopy, X-ray crystallography, and density functional theory (DFT) calculations. The three dimers interconvert as a function of pH: the doubly cationic dimer (Xan(+))(2) exists in acidic solutions (pH<0.5), the mono-alcohol monocation Xan(+)-Xan-OH at intermediate pH values (pH = 1-3), and the neutral diol at the highest pH-values (pH>3). Each dimer exhibits conformational degrees of freedom associated with rotations of either the xanthene moiety or of the diphenyl ether (DPE) linker. The barriers for rotation of the xanthylium moiety were evaluated using DFT calculations, yielding values of 23 kcal/mol for (Xan(+))(2) and 11 kcal/mol for (Xan-OH)(2), respectively. The rotational barrier for the diphenyl ether linker in Xan(+)-Xan-OH (15 kcal/mol) was experimentally determined using variable temperature NMR measurements. The relative orientation of the two -OH groups in (Xan-OH)(2) diol was investigated in solution and the solid state using NMR spectroscopy and X-ray crystallography. The conformer observed in the solid state was found to be the In-Out conformer, while free rotation of the xanthenol units is thought to occur on the NMR timescale at room temperature. These studies are relevant for the design of linkers for efficient water oxidation catalysts. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:使用NMR光谱,X射线晶体学和密度泛函理论(DFT)计算研究了由两个通过二苯醚连接基连接的基于蒽吨基的部分组成的三个共价连接的二聚体的构象柔性。这三个二聚体根据pH进行相互转换:双阳离子二聚体(Xan(+))(2)存在于酸性溶液(pH <0.5)中,一元醇单阳离子Xan(+)-Xan-OH在中等pH值下(pH = 1-3),且中性二醇处于最高pH值(pH> 3)。每个二聚体均显示出与the吨部分或二苯醚(DPE)接头的旋转相关的构象自由度。使用DFT计算评估了黄an部分的旋转势垒,(Xan(+))(2)的值分别为23 kcal / mol和(Xan-OH)(2)的值为11 kcal / mol。 Xan(+)-Xan-OH(15 kcal / mol)中二苯醚接头的旋转势垒是使用可变温度NMR测量通过实验确定的。 (Xan-OH)(2)二醇中的两个-OH基团的相对取向使用NMR光谱学和X射线晶体学方法研究了溶液和固态状态。发现在固态下观察到的构象异构体是In-Out构象异构体,而认为在室温下在NMR时标上发生了黄原酚单元的自由旋转。这些研究与高效水氧化催化剂的接头设计有关。版权所有(C)2016 John Wiley&Sons,Ltd.

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