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Using Ligand Bite Angles To Control the Hydricity of Palladium Diphosphine Complexes

机译:使用配体咬合角控制钯二膦配合物的亲水性

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摘要

A series of [Pd(diphosphine)2](BF4)2 and Pd(diphosphine)2 complexes have been prepared for which the natural bite angle of the diphosphine ligand varies from 78° to 111°. Structural studies have been completed for 7 of the 10 new complexes described. These structural studies indicate that the dihedral angle between the two planes formed by the two phosphorus atoms of the diphosphine ligands and palladium increases by over 50° as the natural bite angle increases for the [Pd(diphosphine)_2](BF_4)_2 complexes. The dihedral angle for the Pd(diphosphine)2 complexes varies less than 10° for the same range of natural bite angles. Equilibrium reactions of the Pd(diphosphine)_2 complexes with protonated bases to form the corresponding [HPd(diphosphine)_2]~+ complexes were used to determine the pKa values of the corresponding hydrides. Cyclic voltammetry studies of the [Pd(diphosphine)_2](BF_4)_2 complexes were used to determine the half-wave potentials of the Pd(II/I) and Pd(I/0) couples. Thermochemical cycles, half-wave potentials, and measured pK_a values were used to determine both the homolytic ([HPd(diphosphine)_2]~+ → [Pd(diphosphine)_2]~+ + H~·) and the heterolytic ([HPd(diphosphine)_2]~+ → [Pd(diphosphine)_2]~(2+) + H~-) bond-dissociation free energies, ΔG°_H~· and ΔG°_H~-, respectively. Linear free-energy relationships are observed between pK_a and the Pd(I/0) couple and between and the Pd(II/I) couple. The measured values for ΔG°_H~· were all 57 kcal/mol, whereas the values of ΔG°_H~- ranged from 43 kcal/mol for [HPd(depe)_2]~+ (where depe is bis(diethylphosphino)ethane) to 70 kcal/mol for [HPd(EtXantphos)_2]~+ (where EtXantphos is 9,9-dimethyl-4,5-bis(diethylphosphino)xanthene). It is estimated that the natural bite angle of the ligand contributes approximately 20 kcal/mol to the observed difference of 27 kcal/mol for ΔG°_(H~-).
机译:已经制备了一系列的[Pd(二膦)2](BF 4)2和Pd(二膦)2配合物,其二膦配体的自然咬合角在78°至111°之间变化。已经完成了所描述的10种新复合物中的7种的结构研究。这些结构研究表明,由二膦配体的两个磷原子和钯形成的两个平面之间的二面角随着[Pd(diphosphine)_2](BF_4)_2配合物的自然咬合角的增加而增加超过50°。对于相同范围的自然咬合角,Pd(二膦)2配合物的二面角变化小于10°。 Pd(二膦)_2配合物与质子化碱的平衡反应形成相应的[HPd(diphosphine)_2]〜+配合物用于确定相应氢化物的pKa值。 [Pd(二膦)_2](BF_4)_2络合物的循环伏安研究用于确定Pd(II / I)和Pd(I / 0)对的半波电势。使用热化学循环,半波电势和测得的pK_a值确定均溶性([HPd(diphosphine)_2]〜+→[Pd(diphosphine)_2]〜+ + H〜·)和杂溶性([HPd (二膦)_2]〜+→[Pd(二膦)_2]〜(2+)+ H〜-)键解离自由能ΔG°_H〜·和ΔG°_H〜-。在pK_a与Pd(I / 0)对之间以及与Pd(II / I)对之间观察到线性自由能关系。 ΔG°_H〜·的测量值均为57 kcal / mol,而[HPd(depe)_2]〜+(其中depe为双(二乙基膦基)乙烷)的ΔG°_H〜-值范围为43 kcal / mol。 )至[HPd(EtXantphos)_2] +(其中EtXantphos是9,9-二甲基-4,5-双(二乙基膦基)ne吨的)的最大kcal / mol。据估计,对于ΔG°_(H〜-),所观察到的27kcal / mol的差异,配体的自然咬合角贡献了约20kcal / mol。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2004年第17期|p. 5502-5514|共13页
  • 作者单位

    National Renewable Energy Laboratory, 1617 Cole Boulevard, Golden, Colorado 80401;

    National Renewable Energy Laboratory, 1617 Cole Boulevard, Golden, Colorado 80401;

    National Renewable Energy Laboratory, 1617 Cole Boulevard, Golden, Colorado 80401;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523;

    National Renewable Energy Laboratory, 1617 Cole Boulevard, Golden, Colorado 80401;

  • 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

  • 入库时间 2022-08-18 03:24:47

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