Courcot Blandine, Tran Diem Ngan, Fraisse Bernard, Bonhomme François, Marsura Alain, Ghermani Nour Eddine
Ecole Centrale Paris, Laboratoire SPMS UMR CNRS 8580 1, Grande Voie des Vignes, 92295 Châtenay-Malabry, France.
Chemistry. 2007;13(12):3414-23. doi: 10.1002/chem.200601686.
A new efficient and safe synthesis of 3,3'-dimethyl-5,5'-bis-(1,2,4-triazine) is presented. The electron-density distribution and electrostatic properties (charge, electrostatic potential) of this molecule were analyzed. These properties were derived from a high-resolution single-crystal X-ray diffraction experiment at 100 K and compared to the results obtained from ab initio DFT quantum-mechanical calculations. Comparisons of its electrostatic potential features and integrated atomic charges (quantum theory of atoms in molecules, QTAIM) have been made with those of related molecules such as bipyrimidine ligands. Two methods were used to derive integrated charges: one is based on the conventional analytical procedure and the second uses a steepest-ascent numerical algorithm. Excellent agreement was obtained between these two methods. Charges and electrostatic potential were used as predictive indices of metal chelation and discussed in the light of complexation abilities of the title compound and related molecules. The crystal structure of a Cu(I) complex of 3,3'-dimethyl-5,5'-bis(1,2,4-triazine) is reported here. In the solid state, this complex forms a three-dimensional multibranch network with open channels in which counterions and solvent molecules are located. This architecture involves both cis and trans isomers of the title compound.
本文介绍了一种新型高效且安全的3,3'-二甲基-5,5'-双(1,2,4-三嗪)合成方法。分析了该分子的电子密度分布和静电性质(电荷、静电势)。这些性质源自100 K下的高分辨率单晶X射线衍射实验,并与从头算DFT量子力学计算结果进行了比较。将其静电势特征和积分原子电荷(分子中原子的量子理论,QTAIM)与相关分子(如联嘧啶配体)进行了比较。使用了两种方法来推导积分电荷:一种基于传统分析程序,另一种使用最速上升数值算法。这两种方法之间取得了极好的一致性。电荷和静电势被用作金属螯合的预测指标,并根据标题化合物及相关分子的络合能力进行了讨论。本文报道了3,3'-二甲基-5,5'-双(1,2,4-三嗪)的Cu(I)配合物的晶体结构。在固态下,该配合物形成具有开放通道的三维多分支网络,抗衡离子和溶剂分子位于其中。这种结构涉及标题化合物的顺式和反式异构体。