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首页> 外文期刊>Journal of the American Chemical Society >1,8-Bis(hexamethyltriaminophosphazenyl)naphthalene,HMPN:A Superbasic Bisphosphazene 'Proton Sponge'
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1,8-Bis(hexamethyltriaminophosphazenyl)naphthalene,HMPN:A Superbasic Bisphosphazene 'Proton Sponge'

机译:1,8-双(六甲基三氨基磷腈)萘,HMPN:超碱性双磷腈“质子海绵”

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摘要

It is shown that a combination of Schwesinger's phosphazene base concept and the idea of the disubstituted 1,8-naphthalene spacer,first introduced by Alder in paradigmatic 1,8-bis(dimethylamino)-naphthalene (DMAN),yields a new superbase,HMPN,which represents the up to date most basic representative of this class of "proton sponges",as evidenced by the theoretically estimated proton affinity PA=274 kcal/mol and the measured pK_(BH)~+ (MeCN) 29.9+-0.2.HMPN is by nearly 12 orders of magnitude more basic than Alder's classical 1,8-bis(dimethylamino)naphthalene (DMAN).The title compound,HMPN,is prepared and fully characterized.The spatial structure of HMPN and its conjugate acid is determined by X-ray technique and theoretical DFT calculations.It is found that monoprotonated HMPN has an unsymmetrical intramolecular hydrogen bridge (IHB).This cooperative proton chelating effect renders the bisphosphazene more basic than Schwesinger's set of "monodentate" P_1 phosphazene bases.The density functional calculations are in good accordance with the experimental results,providing some complementary information.They conclusively show that the high basicity of HMPN is a consequence of the high energy content of the base in its initial neutral state and the intramolecular hydrogen bonding in the resulting conjugate acid with contributions to proton affinity of 14.1 and 9.5 kcal/mol,respectively.
机译:结果表明,施威辛格的磷腈碱概念与双取代的1,8-萘间隔基的概念相结合,这是Alder首次将范式的1,8-双(二​​甲基氨基)-萘(DMAN)引入,产生了新的超碱,HMPN代表了此类“质子海绵”的最新最基本代表,这在理论上估计为质子亲和力PA = 274 kcal / mol和测得的pK_(BH)〜+(MeCN)29.9 + -0.2证明了这一点。 HMPN的碱性比Alder经典的1,8-双(二​​甲基氨基)萘(DMAN)高出近12个数量级。制备并充分表征了标题化合物HMPN.HMPN及其共轭酸的空间结构由X射线技术和理论DFT计算。发现单质子化的HMPN具有不对称的分子内氢桥(IHB)。这种协同的质子螯合作用使双磷腈比Schwesinger的“单齿” P_1磷腈碱更为碱性。常规计算与实验结果完全吻合,并提供了一些补充信息。它们最终表明,HMPN的高碱度是由于碱在其初始中性状态下的高能量含量以及所得共轭物中的分子内氢键导致的酸对质子亲和力的贡献分别为14.1和9.5 kcal / mol。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第45期|p.15738-15743|共6页
  • 作者单位

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

    Contribution from the Fachbereich Chemie,Philipps-Universitat Marburg,Hans-Meerwein-Strasse,35032 Marburg,Germany,and Quantum Chemistry Group,Rudjer Boskovic Institute,Bijenicka c.54,10000 Zagreb-HR,Croatia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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