首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Time-resolved photoacoustic calorimetry of organometallic ligand substitution in alkane solvents: Molybdenum-alkane σ bond controls fast ligand addition to molybdenum pentacarbonyl
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Time-resolved photoacoustic calorimetry of organometallic ligand substitution in alkane solvents: Molybdenum-alkane σ bond controls fast ligand addition to molybdenum pentacarbonyl

机译:烷烃溶剂中有机金属配体取代的时间分辨光声量热法:钼 - 烷烃σ键对钼戊羰基的快速配体加入

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The kinetics and energetics of molybdenum hexacarbonyl ligand substitution with lone pair donor ligands in alkane solvents have been investigated by time-resolved photoacoustic calorimetry (PAC). Two mechanistic steps can be resolved following irradiation: (1) substitution of CO by solvent to form an alkane sigma complex and (2) the displacement of the alkane by a donor ligand. The enthalpy of the first step was 29?kcal/mol for all ligands, while the second step varies from ?4 (benzene) to ?24 (tetrahydrothiophene) kcal/mol for ten σ, π, and lone pair donors. Stereospecific solution bond energies are reported for the alkane solvent and ten ligands. In heptane, second-order rate constants vary nearly 600-fold (benzene to triethylphosphite), correlate poorly with bond energies but do correlate well with the steric environment of the donor electrons: σ and π?
机译:通过时间分辨的光声量热法(PAC)研究了用烷烃溶剂中溶液供体配体的钼六烷烃配体的动力学和能量。 在照射后可以解决两种机械步骤:(1)通过溶剂取代CO以形成烷烃σ复合物,并通过供体配体烷烃的位移。 对于所有配体,第一步的焓为29?Kcal / mol,而第二步骤从α4(四氢噻吩)kcal / mol变化为10σ,π和孤独对供体。 向烷烃溶剂和十种配体报道了立体溶液键合能。 在庚烷中,二阶速率常数变化近600倍(苯到三乙基磷酸盐),与粘合能量不良,但与供体电子的空间环境相比很好地关联:σ和παλλλλλλλλλλλε?< ?在二价原子上的单身对?<?孤类一价原子对。

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