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首页> 外文期刊>Inorganica Chimica Acta >DYNAMICS OF COBALT(II) SPIN-EQUILIBRIUM COMPLEXES
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DYNAMICS OF COBALT(II) SPIN-EQUILIBRIUM COMPLEXES

机译:钴(II)自旋平衡络合物的动力学

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Ultrasonic absorption measurements have been made on solutions of three cobalt(II) spin-equilibrium complexes. For the bis(terpyridine)cobalt(II) ion, no excess absorption was observed either in aqueous or methanol solutions, which implies a spin-equilibrium relaxation time of less than 2 ns, consistent with previous laser T-jump observations. For the bis(2,6-N-NHCH3-pyridinedicarboxaldimine)cobalt(II) ion again no excess sound absorption occurs in aqueous solution. Laser T-jump observations show a spectral change within the 13 ns heating risetime. For this complex in methanol and acetonitrile, however, a large excess sound absorption was observed which is described by overlapping double relaxation curves. A similar absorption was found as well for methanol solutions of the bis(2,6-t-butylpyridinedicarboxaldimine)cobalt(II) ion which is fully high-spin. This implies that the observed relaxations do not arise from the spin equilibrium but from some other process, possibly the dechelation of the ligand. Variable temperature solution magnetic moments and associated thermodynamic parameters are reported for the two spin-equilibrium complexes: for bis(terpyridine)cobalt(II) ion the thermodynamic parameters were calculated to be Delta H degrees = (2.085 +/- 0.007) kcal mol(-1) and Delta S degrees = (6.33 +/- 0.03) cal deg(-1) mol(-1) in methanol, and Delta H degrees = (3.93 +/- 0.02) kcal mol(-1) and Delta S degrees = (13.12 +/- 0.07) cal deg(-1) mol(-1) in water; for bis(2,6-N-NHCH3-pyridinedicarboxaldimine)cobalt(II) ion the thermodynamic parameters are Delta H degrees = (2.74 +/- 0.01) kcal mol(-1) and Delta S degrees = (7.29 +/- 0.04) cal deg(-1) mol(-1) in methanol, and Delta H degrees = (4.11 +/- 0.05)kcal mol(-1) and Delta S degrees = (10.85 +/- 0.15) cal deg(-1) mol(-1) in water. [References: 25]
机译:已对三种钴(II)自旋平衡络合物的溶液进行了超声波吸收测量。对于双(吡啶基)钴(II)离子,在水溶液或甲醇溶液中均未观察到过量吸收,这意味着自旋平衡的弛豫时间小于2 ns,这与以前的激光T跃迁观察一致。对于双(2,6-N-NHCH3-吡啶基二羧酸二亚胺)钴(II)离子,水溶液中也不会发生多余的吸声。激光T跃变观测显示出在13 ns的加热上升时间内光谱发生了变化。然而,对于在甲醇和乙腈中的这种络合物,观察到大量过量的吸声,这通过重叠的双弛豫曲线来描述。对于完全高自旋的双(2,6-叔丁基吡啶基二boxboxaldimine)钴(II)离子的甲醇溶液,也发现了相似的吸收。这意味着观察到的弛豫不是由自旋平衡引起的,而是由其他过程引起的,可能是配体的螯合。报告了两种自旋平衡络合物的可变温度溶液磁矩和相关的热力学参数:对于双(叔吡啶)钴(II)离子,计算出的热力学参数为Delta H度=(2.085 +/- 0.007)kcal mol( -1)和Delta S度=(6.33 +/- 0.03)cal deg(-1)mol(-1)在甲醇中,Delta H度=(3.93 +/- 0.02)kcal mol(-1)和Delta S度=(13.12 +/- 0.07)cal deg(-1)mol(-1)在水中;对于双(2,6-N-NHCH3-吡啶二羧酸二亚胺)钴(II)离子,热力学参数为Delta H度=(2.74 +/- 0.01)kcal mol(-1)和Delta S度=(7.29 +/- 0.04 )cal deg(-1)mol(-1)在甲醇中,并且Delta H度=(4.11 +/- 0.05)kcal mol(-1)和Delta S度=(10.85 +/- 0.15)cal deg(-1 )在水中的mol(-1)。 [参考:25]

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