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Acyclic Germylones: Congeners of Allenes with a Central Germanium Atom

机译:无环Germylones:具有中央锗原子的Allenes的同系物

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摘要

The cyclic alkyl(amino) carbene (cAAC:)-stabi-lized acyclic germylones (Me_2-cAAC:)_2Ge (1) and (Cy_2-cAAC:)_2Ge (2) were prepared utilizing a one-pot synthesis of GeCl_2(dioxane), cAAC:, and KC_8 in a 1:2:2.1 molar ratio. Dark green crystals of compounds 1 and 2 were produced in 75 and 70% yields) respectively. The reported methods for the preparation of the corresponding silicon compounds turned out to be not applicable in the case of germanium. The single-crystal X-ray structures of 1 and 2 feature the C-Ge-C bent backbone, which possesses a three-center two-electron π-bond system. Compounds 1 and 2 are the first acyclic germylones containing each one germanium atom and two cAAC: molecules. EPR measurements on compounds 1 and 2 confirmed the singlet spin ground state. DFT calculations on 1/2 revealed that the singlet ground state is more stable by ~16 to 18 kcal mol~(-1) than that of the triplet state. First and second proton affinity values were theoretically calculated to be of 265.8 (1)/267.1 (2) and 180.4 (1)/183.8 (2) kcal mol~(-1), respectively. Further calculations, which were performed at different levels suggest a singlet diradicaloid character of 1 and 2. The TD-DFT calculations exhibit an absorption band at ~655 nm in n-hexane solution that originates from the diradicaloid character of germylones 1 and 2.
机译:利用一锅法合成GeCl_2(二恶烷)制备了环状烷基(氨基)卡宾(cAAC :)稳定的无环生殖环(Me_2-cAAC:)_ 2Ge(1)和(Cy_2-cAAC:)_ 2Ge(2)。 ),cAAC:和KC_8摩尔比为1:2:2.1。化合物1和2的深绿色晶体分别以75%和70%的产率生产。报道的制备相应硅化合物的方法证明不适用于锗。 1和2的单晶X射线结构具有C-Ge-C弯曲骨架,该骨架具有三中心的两个电子π键系统。化合物1和2是分别包含一个锗原子和两个cAAC:分子的第一无环生殖环。对化合物1和2的EPR测量证实了单线态自旋基态。 DFT对1/2的计算表明,单线态基态比三线态更稳定约16至18 kcal mol〜(-1)。理论上计算第一和第二质子亲和力值分别为265.8(1)/267.1(2)和180.4(1)/183.8(2)kcal mol〜(-1)。在不同水平上进行的进一步计算表明,单重双自由基的特征为1和2。TD-DFT计算显示正己烷溶液在〜655 nm处的吸收带,其起源于生殖器1和2的双自由基的特征。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第33期|12422-12428|共7页
  • 作者单位

    State Key Laboratory of Physical Chemistry of Solid Surfaces, National Engineering Laboratory for Green Chemical Productions of Alcohols-Ethers-Esters, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian, 361005, China,Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    State Key Laboratory of Physical Chemistry of Solid Surfaces, National Engineering Laboratory for Green Chemical Productions of Alcohols-Ethers-Esters, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian, 361005, China;

    Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    Institut fuer Anorganische Chemie, Georg-August-Universitaet, Tammannstrasse 4,Tammannstrasse 6, 37077-Goettingen, Germany;

    Institut fuer Physikalische Chemie, Georg-August-Universitaet, Tammannstrasse 6, 37077-Goettingen, Germany,Instituto de Investigaciones en Fisicoquimica de Cordoba, Departamento de Quimica Organica, Facultad de Ciencias Quimicas, Universidad Nacional de Cordoba, Ciudad Universitaria 5016, Cordoba, Argentina;

  • 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);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:12:50

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