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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Conformational fluxionality in a palladium(II) complex of flexible click chelator 4-phenyl-1-(2-picolyl)-1,2,3-triazole: A dynamic NMR and DFT study
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Conformational fluxionality in a palladium(II) complex of flexible click chelator 4-phenyl-1-(2-picolyl)-1,2,3-triazole: A dynamic NMR and DFT study

机译:柔性点击螯合剂4-苯基-1-(2-吡啶甲基)-1,2,3-三唑的钯(II)配合物中的构象通量:动态NMR和DFT研究

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摘要

An experimental and theoretical DFT study was carried out on the solution behavior in [D_7]DMF for bis-chelate complex [Pd(L) _2](BF_4)_2·2CH_3CN (L = 4-phenyl-1-(2-picolyl)-1,2,3-triazole). In structure of [Pd(L)_2] ~(2+), the central square-planar palladium(II) cation is trans-chelated by two L substrates, each through the pyridine and the triazole N2 nitrogen atoms, forming two six-membered metallacycles. These can adopt boat-like conformations anti-trans-[Pd(L)_2]~(2+) and syn-trans-[Pd(L)_2]~(2+) in which the picolyl methylene carbons are anti or syn, respectively, relative to the palladium coordination plane. In solution, the boat-to-boat inversion at both metallacycles takes place. The conformers are in a dynamic equilibrium, which was monitored by variable-temperature (VT) ~1H NMR spectroscopy in the temperature range of 223-353 K. The equilibrium lies on the side of the anti-trans-[Pd(L) _2]~(2+) conformer and the corresponding reaction enthalpy and entropy is estimated to be 0.6 ± 0.5 kcal mol~(-1) and 0.8 ± 1 cal mol~(-1) K~(-1), respectively. From the full-line-shape analysis of resonances in the VT ~1H NMR spectra, the activation enthalpy and activation entropy was determined to be 13.0 ± 0.4 kcal mol~(-1) and 2.7 ± 1.6 cal mol~(-1) K ~(-1), respectively. The activation entropy close to zero suggests a nondissociative mechanism for the isomerisation. DFT investigation revealed that the isomerisation proceeds through a one step mechanism with a barrier of 11.40 kcal mol~(-1). The structures of the syn and anti conformers as well as that of the transition state were characterized. Energy decomposition analysis was carried out in order to explore the origins of the stability difference between the syn and anti isomers.
机译:对双螯合物[Pd(L)_2](BF_4)_2·2CH_3CN(L = 4-phenyl-1-(2-picolyl))在[D_7] DMF中的溶解行为进行了实验和理论DFT研究。 -1,2,3-三唑)。在[Pd(L)_2]〜(2+)的结构中,中心的方形平面钯(II)阳离子被两个L底物反式螯合,每个底物都通过吡啶和三唑N2氮原子,形成两个六-成员metallacycles。这些可以采用船形构象,反式-[Pd(L)_2]〜(2+)和顺式-[Pd(L)_2]〜(2+),其中甲基吡啶甲基为反式或顺式。分别相对于钯配位平面。在解决方案中,两个金属轮船都发生了船到船的倒转。构象异构体处于动态平衡状态,可通过在223-353 K的温度范围内通过可变温度(VT)〜1H NMR光谱进行监测。该平衡点位于反-反-[Pd(L)_2侧]〜(2+)构象异构体以及相应的反应焓和熵估计分别为0.6±0.5 kcal mol〜(-1)和0.8±1 cal mol〜(-1)K〜(-1)。根据VT〜1H NMR光谱中共振的全线形分析,确定活化焓和活化熵为13.0±0.4 kcal mol〜(-1)和2.7±1.6 cal mol〜(-1)K 〜(-1)。接近于零的活化熵表明异构化的非解离机理。 DFT研究表明,异构化过程是通过一步法进行的,其势垒为11.40 kcal mol〜(-1)。表征了顺式和反式构象体的结构以及过渡态的结构。进行能量分解分析是为了探讨顺式异构体和反式异构体之间稳定性差异的根源。

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