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Large Molecular Weight Nitroxide Biradicals Providing Efficient Dynamic Nuclear Polarization at Temperatures up to 200 K

机译:大分子量一氧化二氮双自由基可在高达200 K的温度下提供有效的动态核极化

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摘要

A series of seven functionalized nitroxide biradicals (the bTbK biradical and six derivatives) are investigated as exogenous polarization sources for dynamic nuclear polarization (DNP) solid-state NMR at 9.4 T and with ca. 100 K sample temperatures. The impact of electron relaxation times on the DNP enhancement (ε) is examined, and we observe that longer inversion recovery and phase memory relaxation times provide larger ε. All radicals are tested in both bulk 1,1,2,2-tetrachloroethane solutions and in mesoporous materials, and the difference in ε between the two cases is discussed. The impact of the sample temperature and magic angle spinning frequency on e is investigated for several radicals each characterized by a range of electron relaxation times. In particular, TEKPol, a bulky derivative of bTbK with a molecular weight of 905 g·mol~(-1), is presented. Its high-saturation factor makes it a very efficient polarizing agent for DNP, yielding unprecedented proton enhancements of over 200 in both bulk and materials samples at 9.4 T and 100 K. TEKPol also yields encouraging enhancements of 33 at 180 K and 12 at 200 K, suggesting that with the continued improvement of radicals large e may be obtained at higher temperatures.
机译:研究了一系列七个功能化的一氧化二氮双自由基(bTbK双自由基和六个衍生物)作为动态极化极化(DNP)固态NMR在9.4 T时的外源极化源,其大约为1。 100 K样品温度。检查了电子弛豫时间对DNP增强(ε)的影响,我们观察到更长的反演恢复和相记忆弛豫时间可提供更大的ε。所有的自由基都在块状1,1,2,2-四氯乙烷溶液和介孔材料中进行了测试,并讨论了两种情况下ε的差异。对于几个自由基,研究了样品温度和魔角旋转频率对e的影响,每个自由基的特征在于一定范围的电子弛豫时间。特别是提出了分子量为905 g·mol〜(-1)的bTbK的大分子衍生物TEKPol。它的高饱和因子使其成为DNP的非常有效的偏振剂,在9.4 T和100 K时,散装和材料样品中的质子增强都达到空前的200倍以上。TEKPol在180 K和200 K时也产生了令人鼓舞的33 ,表明随着自由基的不断改进,在较高温度下可以获得较大的e。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第34期|12790-12797|共8页
  • 作者单位

    Centre de RMN a Tres Hauts Champs, Institut de Sciences Analytiques, Universite de Lyon (CNRS/ENS Lyon/UCB Lyon 1), 69100 Villeurbanne, France;

    Aix-Marseille Universite, CNRS, ICR UMR 7273, 13397 Marseille, France;

    Aix-Marseille Universite, CNRS, ICR UMR 7273, 13397 Marseille, France;

    Department of Chemistry, ETH Zuerich, CH-8093, Zuerich, Switzerland;

    Centre de RMN a Tres Hauts Champs, Institut de Sciences Analytiques, Universite de Lyon (CNRS/ENS Lyon/UCB Lyon 1), 69100 Villeurbanne, France;

    Bruker BioSpin SA, Wissembourg, 67160, France;

    Department of Chemistry, ETH Zuerich, CH-8093, Zuerich, Switzerland;

    Department of Chemistry, ETH Zuerich, CH-8093, Zuerich, Switzerland;

    Department of Chemistry, ETH Zuerich, CH-8093, Zuerich, Switzerland;

    Centre de RMN a Tres Hauts Champs, Institut de Sciences Analytiques, Universite de Lyon (CNRS/ENS Lyon/UCB Lyon 1), 69100 Villeurbanne, France;

    Aix-Marseille Universite, CNRS, ICR UMR 7273, 13397 Marseille, France;

    Centre de RMN a Tres Hauts Champs, Institut de Sciences Analytiques, Universite de Lyon (CNRS/ENS Lyon/UCB Lyon 1), 69100 Villeurbanne, France;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:12:51

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