首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Bond length-bond order relations and calculated geometries for some benzenoid aromatics, including phenanthridine. Structures of 5,6-dimethylphenanthridinium triflate, [N-(6-phenanthridinylmethyl)-aza-18-crown-6-5O,O',O',O'',O''](picrate-2-O,O')potas
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Bond length-bond order relations and calculated geometries for some benzenoid aromatics, including phenanthridine. Structures of 5,6-dimethylphenanthridinium triflate, [N-(6-phenanthridinylmethyl)-aza-18-crown-6-5O,O',O',O'',O''](picrate-2-O,O')potas

机译:某些苯类芳烃(包括菲啶)的键长键序关系和计算的几何形状。 5,6-二甲基菲啶鎓三氟甲磺酸盐,[N-(6-菲啶基甲基)-氮杂-18-冠-6-5O,O',O“,O'”,O“”]的结构(苦味酸-2-O,O ')potas

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The crystal structures of the title compounds are studied in order to investigate the role of novel fluoroionophores in complexation of sodium and potassium. In the potassium complex seven coordination, including the picrate ligand, is encountered. An additional coordination site is via the phenanthridine nitrogen at 3.252 (2) A (second coordination). The complex is of C_1 symmetry and the aza-18-crown-6 macrocylic ring exhibits a crown-type conformation. The 7,16-diaza-18-crown-6 macrocycle accommodates a six-coordinate sodium with two additional ligands, via nitrogen from phenanthridine units. The complex cation shows a crystallographic twofold symmetry. The macrocycle is not of the crovwt-type conformation. In both complexes the alkali metals are shifted out of the cavity centres towards a picrate ligand in |7V-(6-phenanthridmylmethyl)-aza-18-crown-6-K50,0',0",0'",0""](picrate-K2C>,C)-potassium and the phenanthridine units in |W,iV'-bis-(6-phenanthridinyl-KA^-methyl)-7,16-diaza-18-crown-6-/t4O,O',O",O'"]sodium iodide dichloromethane solvate. Semi-empirical and molecular mechanics calculations based on various force fields were used for the optimization of phenanthridine geometry. The values obtained are compared with experimental data. Valence bond calculations of bond lengths in some benzenoid aromatic systems (C-C bonds in benzenoid hydrocarbons, azabenzenoid hydrocarbons and picrate-like systems; C-N bonds in the azabenzenoids; C-O bonds in the picrate-like systems), as well as some analogous Htickel molecular orbital calculations (C-C bonds in the benzenoid hydrocarbons and the azabenzenoids), were found to agree with the observed values (average differences up to 0.015 A). These approaches can be used by means of bond length-bond order relations for prediction of bond lengths in the phenanthridine units as well as in the picrate.
机译:为了研究新型氟离子载体在钠和钾络合中的作用,研究了标题化合物的晶体结构。在钾络合物中,遇到七种配位,包括苦味酸配体。另一个配位点是通过3.252(2)A处的菲氮(第二配位)。该络合物具有C_1对称性,并且氮杂18-冠-6大环具有冠型构象。 7,16-diaza-18-crown-6大环通过来自菲啶单元的氮,可容纳具有两个其他配体的六配位钠。络合物阳离子显示出晶体学双重对称性。大环不是crovwt型构型。在这两种络合物中,碱金属都从腔中心移出,朝着| 7V-(6-邻吡啶甲基甲基)-氮杂-18-皇冠-6-K50,0',0“,0'”,0“” ](picrate-K2C>,C)-钾和| W,iV'-双-(6-菲啶基-KA ^-甲基)-7,16-二氮杂-18-冠-6- / t4O中的菲单位, O′,O”,O′”]碘化钠二氯甲烷溶剂化物。基于各种力场的半经验和分子力学计算被用来优化菲啶的几何形状。将获得的值与实验数据进行比较。某些苯类芳香族体系中键长的价键计算(苯类碳氢化合物,氮杂苯类碳氢化合物和类似苦味酸盐系统中的CC键;氮杂苯类化合物中的CN键;类似苦味酸盐类系统中的CO键),以及一些类似的Htickel分子轨道计算结果(苯并碳氢化合物和氮杂苯并碳化合物中的CC键)与观测值一致(平均差异最大为0.015 A)。可以通过键长-键序关系使用这些方法来预测菲啶单元以及苦味酸酯中的键长。

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