Leniak Arkadiusz, Kamieński Bohdan, Jaźwiński Jarosław
Institute of Organic Chemistry, Polish Academy of Sciences, Warsaw, Poland.
Magn Reson Chem. 2015 May;53(5):344-52. doi: 10.1002/mrc.4201. Epub 2015 Jan 23.
Seven new oligomeric complexes of 4,4'-bipyridine; 3,3'-bipyridine; benzene-1,4-diamine; benzene-1,3-diamine; benzene-1,2-diamine; and benzidine with rhodium tetraacetate, as well as 4,4'-bipyridine with molybdenum tetraacetate, have been obtained and investigated by elemental analysis and solid-state nuclear magnetic resonance spectroscopy, (13)C and (15)N CPMAS NMR. The known complexes of pyrazine with rhodium tetrabenzoate, benzoquinone with rhodium tetrapivalate, 4,4'-bipyridine with molybdenum tetrakistrifluoroacetate and the 1 : 1 complex of 2,2'-bipyridine with rhodium tetraacetate exhibiting axial-equatorial ligation mode have been obtained as well for comparison purposes. Elemental analysis revealed 1 : 1 complex stoichiometry of all complexes. The (15)N CPMAS NMR spectra of all new complexes consist of one narrow signal, indicating regular uniform structures. Benzidine forms a heterogeneous material, probably containing linear oligomers and products of further reactions. The complexes were characterized by the parameter complexation shift Δδ (Δδ = δcomplex - δligand). This parameter ranged from around -40 to -90 ppm in the case of heteroaromatic ligands, from around -12 to -22 ppm for diamines and from -16 to -31 ppm for the complexes of molybdenum tetracarboxylates with 4,4'-bipyridine. The experimental results have been supported by a density functional theory computation of (15)N NMR chemical shifts and complexation shifts at the non-relativistic Becke, three-parameter, Perdew-Wang 91/[6-311++G(2d,p), Stuttgart] and GGA-PBE/QZ4P levels of theory and at the relativistic scalar and spin-orbit zeroth order regular approximation/GGA-PBE/QZ4P level of theory. Nucleus-independent chemical shifts have been calculated for the selected compounds.
已通过元素分析和固态核磁共振光谱法((13)C和(15)N CPMAS NMR)获得并研究了七种新的由4,4'-联吡啶、3,3'-联吡啶、苯-1,4-二胺、苯-1,3-二胺、苯-1,2-二胺和联苯胺与四乙酸铑形成的低聚配合物,以及4,4'-联吡啶与四乙酸钼形成的低聚配合物。为作比较,还获得了已知的吡嗪与四苯甲酸铑的配合物、对苯醌与四特戊酸铑的配合物、4,4'-联吡啶与四(三氟乙酸)钼的配合物以及2,2'-联吡啶与四乙酸铑呈现轴向-赤道配位模式的1∶1配合物。元素分析表明所有配合物的化学计量比均为1∶1。所有新配合物的(15)N CPMAS NMR光谱均由一个窄信号组成,表明结构规则且均匀。联苯胺形成一种非均相材料,可能包含线性低聚物和进一步反应的产物。这些配合物通过络合位移参数Δδ(Δδ = δ配合物 - δ配体)进行表征。对于杂芳族配体,该参数范围约为-40至-90 ppm,二胺为约-12至-22 ppm,四羧基钼与4,4'-联吡啶的配合物为-16至-ppm。实验结果得到了密度泛函理论计算的支持,该计算在非相对论性的Becke三参数Perdew-Wang 91/[6-311++G(2d,p), Stuttgart]和GGA-PBE/QZ4P理论水平以及相对论性标量和自旋轨道零阶正则近似/GGA-PBE/QZ4P理论水平下计算了(15)N NMR化学位移和络合位移。已对选定化合物计算了与核无关的化学位移。