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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Unusual structural and energetic features of homolytic bond dissociation: from tetrakis( disyl)diphosphine to tetrakis(di-tert-butylsilyl)hydrazine
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Unusual structural and energetic features of homolytic bond dissociation: from tetrakis( disyl)diphosphine to tetrakis(di-tert-butylsilyl)hydrazine

机译:均价键解离的不寻常结构和能量特征:从四(二基)二膦到四(二叔丁基甲硅烷基)肼

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Quantum chemical calculations of the structures and thermodynamics of homolytic dissociation of the central P-P and N-N bonds in tetrakis(disyl)diphosphine and tetrakis(di-tert-butylsilyl)hydrazine have been performed. The theory predicted negative standard enthalpies for homolytic bond dissociation in both cases, -71.0 and -108.4 kJ mol(-1) for the diphosphine and hydrazine, respectively, using the ONIOM ( MP2/6-31+G*:B3LYP/3-21G*) level. The dissociation is accompanied by considerable structural changes in the radicals as compared to the corresponding fragments of the parent molecules, resulting in low dissociation enthalpies. The most pronounced changes in both radicals are the relaxation of bond angles in the substituents and a conformational change in the orientation of the substituent groups. In addition, the bis(di-tert-butylsilyl) aminyl radical displays a considerable increase in Si-N-Si angle and shortening of the Si-N bonds upon dissociation. These changes are not associated with any appreciable delocalisation of the lone electron, as the spin density is found from the B3LYP/3-21G* calculations to be largely concentrated on the nitrogen atom. It has been also shown that although the dissociation energies are low for both compounds, the intrinsic energies of the central bonds are still high, 140.6 kJ mol(-1) for the P-P bond in tetrakis( disyl) diphosphine and 490.6 kJ mol(-1) for the N-N bond in tetrakis(di-tert-butylsilyl) hydrazine, using the ONIOM method. The calculations predict that the dissociation of tetrakis( disyl) diphosphine would have negative free energy even without taking relaxation of the fragments into account, while the full potential of releasing about 306 kJ mol(-1) of energy stored in the ligands of tetrakis(di-tert-butylsilyl) hydrazine is only fully realised upon a considerable separation of the fragments.
机译:进行了四(二基)二膦和四(二叔丁基甲硅烷基)肼中中心P-P和N-N键的均相解离的结构和热力学的量子化学计算。该理论使用ONIOM(MP2 / 6-31 + G *:B3LYP / 3-)预测了两种情况下均溶键解离的负标准焓,分别为二膦和肼的-71.0和-108.4 kJ mol(-1)。 21G *)级。与母体分子的相应片段相比,解离伴随着自由基的相当大的结构变化,从而导致低的解离焓。两个基团中最明显的变化是取代基中键角的松弛和取代基的取向的构象变化。另外,双(二叔丁基甲硅烷基)氨基自由基在解离时显示出Si-N-Si角的显着增加和Si-N键的缩短。这些变化与孤电子的任何明显的离域无关,因为从B3LYP / 3-21G *计算中发现自旋密度主要集中在氮原子上。还显示,尽管两种化合物的解离能均较低,但中心键的固有能仍然很高,四(二基)二膦中的PP键为140.6 kJ mol(-1),490.6 kJ mol(- 1)使用ONIOM方法获得四(二叔丁基甲硅烷基)肼中的NN键。计算结果表明,即使不考虑片段的弛豫,四(二甲苯基)二膦的解离也将具有负的自由能,而释放存储在四(二甲苯)配体中的约306 kJ mol(-1)的能量的全部潜力。仅在相当大的片段分离后才能完全实现二叔丁基甲硅烷基)肼。

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