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首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >NMR-based analysis of structure of heteroleptic triple-decker (phthalocyaninato) (porphyrinato) lanthanides in solutions
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NMR-based analysis of structure of heteroleptic triple-decker (phthalocyaninato) (porphyrinato) lanthanides in solutions

机译:基于NMR的溶液中杂多三元(酞菁)(卟啉)镧系元素的结构分析

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A novel approach for the structural analysis of heteroleptic triple-decker (porphyrinato)(phthalocyaninato) lanthanides(III) in solutions is developed. The developed approach consists in molecular mechanics (MM+) optimization of the geometry of the complex taking into account the lanthanide-inducedshift (LIS) datasets. LISsof the resonancepeaks in~1HNMRspectraofaseries of symmetric complexes [An4P]Ln[(15C5)4Pc]Ln[An4P], where An4P~(2-) is 5,10,15,20-tetrakis(4-methoxyphenyl)porphyrinatodianion, [(15C5)4Pc] ~(2-) is 2,3,9,10,16,17,24,25-tetrakis(15-crown-5)phthalocyaninato- dianion and Ln = La, Ce, Pr, Nd, Sm, Eu, are analyzed. Analysis of LISs showed two sets of protons in themoleculewith opposite signs of shift. Two-nuclei analysis of LISs testifies isostructurality of the whole series of investigated complexes in solution despite contraction of the lanthanide ions. Model-free separation of contact and dipolar contributions of LISs was performed with one-nucleus technique and did not show changes in contact and dipolar terms within the investigated series.MM+ optimization of themolecular structure allowed the interpretation of features of LIS for each particular group of protons. Parameterization of MM+-optimized model of molecule with values of structure-dependent dipolar contributions of LIS allows the development of the precise structural model of the triple-decker complex in solution. This approach allows the determination of the geometry and structure of the sandwich macrocyclic tetrapyrrolic complexes together with conformational analysis of flexible peripheral substituents in solutions. The developed method can be applied with minor modifications for the determination of structural parameters of other types of lanthanides(III) complexes with tetrapyrrolic ligands and also supramolecular systems based on them.
机译:提出了一种溶液中杂多三聚体(卟啉酮)(邻酞菁)镧系元素(Ⅲ)结构分析的新方法。考虑到镧系元素引起的位移(LIS)数据集,开发的方法包括对复合物的几何结构进行分子力学(MM +)优化。在一系列对称配合物[An4P] Ln [(15C5)4Pc] Ln [An4P]的〜1HNMR谱中的共振峰的LISs,其中An4P〜(2-)为5,10,15,20-四(4-甲氧基苯基)卟啉邻二阴离子,[[ 15C5)4Pc]〜(2-)是2,3,9,10,16,17,24,25-四(15-crown-5)酞菁双键,Ln = La,Ce,Pr,Nd,Sm, ,,进行了分析。 LIS的分析表明分子中的两组质子具有相反的移动迹象。尽管镧系元素离子收缩,但LIS的两核分析证明了整个系列研究溶液的同构性。用单核技术进行LIS接触和偶极贡献的无模型分离,并且在所研究的系列中没有显示接触和偶极项的变化.MM +分子结构的优化允许解释LIS每一特定组的特征质子具有LIS的结构依赖性偶极贡献值的MM +优化分子模型的参数化,可以开发溶液中三层复合体的精确结构模型。这种方法可以确定夹心大环四吡咯配合物的几何和结构,以及溶液中柔性周边取代基的构象分析。所开发的方法可以稍加修改即可用于测定其他类型的具有四吡咯配体的镧系元素(III)配合物的结构参数,以及基于它们的超分子系统。

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