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首页> 外文期刊>Journal of Chemical Education >Equilibrium between Different Coordination Geometries in Oxidovanadium(IV) Complexes
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Equilibrium between Different Coordination Geometries in Oxidovanadium(IV) Complexes

机译:氧化钒(IV)配合物中不同配位几何之间的平衡

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摘要

In this laboratory activity, the equilibrium between square pyramidal and octahedral V(IV)O2+ complexes is described. We propose a set of experiments to synthesize and characterize two types of V(IV)O2+ complexes. The experiment allows great flexibility and may be effectively used at a variety of levels and the activity can be lengthened or shortened depending on the available time. The laboratory practice can combine various experiments: (i) synthesis of solid transition metal complexes, (ii) analysis of the solid complexes to hypothesize their coordination geometry, (iii) measurement of room temperature and frozen solution EPR (Electron Paramagnetic Resonance) spectra obtained when dissolving the solid complexes in different solvents, (iv) software simulation of room temperature and frozen solution EPR spectra, (v) measurement of UV-vis spectra of solutions obtained when dissolving the solid complexes in different solvents, (vi) optimization of the coordination geometry of V(IV)O2+ complexes with DFT calculations, (vii) calculation of the EPR parameters of V(IV)O2+ complexes with DFT methods, and (viii) influence of the temperature on the equilibrium calculated using DFT methods. The activity is organized to guide the students towards to a plausible explanation of the experimental evidence.
机译:在此实验室活动中,描述了方形金字塔形和八面体V(IV)O2 +复合物之间的平衡。我们提出了一组实验来合成和表征两种类型的V(IV)O2 +配合物。该实验具有很大的灵活性,可以在各种级别上有效使用,并且可以根据可用时间延长或缩短活动时间。实验室实践可以结合各种实验:(i)固体过渡金属配合物的合成,(ii)固体配合物的分析以假设其配位几何形状,(iii)测量室温和冷冻溶液的EPR(电子顺磁共振)光谱当将固体配合物溶解在不同的溶剂中时,(iv)室温和冷冻溶液EPR光谱的软件模拟,(v)将固体配合物溶解在不同溶剂中时获得的溶液的UV-vis光谱的测量,(vi)优化V(IV)O2 +配合物的DFT计算的配合几何,(vii)DFT方法计算V(IV)O2 +配合物的EPR参数,以及(viii)温度对使用DFT方法计算的平衡的影响。该活动旨在引导学生对实验证据进行合理的解释。

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