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首页> 外文期刊>The Journal of Organic Chemistry >C-C Cross-Coupling Reactions of Trityl Radicals: Spin Density Delocalization, Exchange Coupling, and a Spin Label
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C-C Cross-Coupling Reactions of Trityl Radicals: Spin Density Delocalization, Exchange Coupling, and a Spin Label

机译:TRITYL自由基的C-C交叉耦合反应:旋转密度临床化,交换耦合和旋转标签

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摘要

Organic radicals are usually highly reactive and short-lived species. In contrast, tetrathiatriarylmethyl radicals, the so-called trityl- or TAM-radicals, are stable and do survive over longer times even under in-cell conditions. In addition, they show strong EPR signals, have long phase memory times at room temperature, and are reporters on local oxygen and proton concentrations. These properties facilitated their use for magnetic resonance imaging, dynamic nuclear polarization, and spin-labeling EPR under in-cell conditions. Thus, synthetic approaches are required for functionalization of TAM radicals tailored to the desired application. However, most TAM derivatives reported in the literature are based on esterification of the Finland trityl, which is prone to hydrolysis. Here, we report on an approach in which TAM is site-selective iodinated and subsequently C-C cross-coupled to various building blocks in a modular approach. This yields conjugated trityl compounds such as a trityl attached to a porphyrin, an alkinyl functionalized trityl radical, and a strongly exchange-coupled trityl biradical. This synthesis approach thus has implications not only for magnetic resonance spectroscopy but also for the design of molecular magnets or quantum computing devices.
机译:有机自由基通常是高度反应性和短寿命的物种。相反,四硫胺甲基自由基,所谓的TRITYL-或TAM-基团是稳定的,即使在细胞内条件下也能在较长时间内存活。此外,它们显示出强烈的EPR信号,在室温下具有长相的存储时间,并且是局部氧气和质子浓度的记者。这些性能促进了在细胞内条件下用于磁共振成像,动态核极化和旋转标记EPR的用途。因此,对所需应用程序定制的TAM基团的功能化需要合成方法。然而,文献中报道的大多数TAM衍生物都是基于芬兰Trityl的酯化,其易于水解。在这里,我们报告了TAM是站点选择性碘化的方法,并且随后以模块化方法将C-C交叉耦合到各种构建块。这产生了缀合的Trityl化合物,例如连接到卟啉的三十r,官能化的Trityl基团,以及强互换偶联的Trityl型抗体。因此,该合成方法不仅对磁共振光谱进行了影响,而且具有用于设计分子磁体或量子计算装置的影响。

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  • 来源
    《The Journal of Organic Chemistry》 |2019年第6期|共11页
  • 作者单位

    Rheinische Friedrich Wilhelms Univ Bonn Inst Phys &

    Theoret Chem Wegelerstr 12 D-53115 Bonn Germany;

    Rheinische Friedrich Wilhelms Univ Bonn Inst Phys &

    Theoret Chem Wegelerstr 12 D-53115 Bonn Germany;

    Rheinische Friedrich Wilhelms Univ Bonn Inst Phys &

    Theoret Chem Wegelerstr 12 D-53115 Bonn Germany;

    Rheinische Friedrich Wilhelms Univ Bonn Inst Phys &

    Theoret Chem Wegelerstr 12 D-53115 Bonn Germany;

    Univ Freiburg Inst Phys Chem Albertstr 21 D-79104 Freiburg Germany;

    Rheinische Friedrich Wilhelms Univ Bonn Inst Phys &

    Theoret Chem Wegelerstr 12 D-53115 Bonn Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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