首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Coordination chemistry of mercury(II) halide complexes: a combined experimental, theoretical and (ICSD & CSD) database study on the relationship between inorganic and organic units
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Coordination chemistry of mercury(II) halide complexes: a combined experimental, theoretical and (ICSD & CSD) database study on the relationship between inorganic and organic units

机译:汞(II)的协调化学(II)卤化物复合物:一种综合实验,理论和(ICSD&CSD)数据库研究无机与有机单位的关系

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From the viewpoint of inorganic crystal engineering (ICE), the coordination sphere of the metal centre can be affected by two main parts of inorganic and organic units in complexes. Database study can play a significant role in the explanation of the relationship between various parameters related to these parts. For the first time, we have investigated this relationship through the concomitant studies of the inorganic crystal structure database (ICSD) and the cambridge structural database (CSD) for mercury(II) halide compounds. The results of CSD analysis are divided into two categories of metal halide complexes (MHC or mercury halide compounds with ligands) and metal halide only (MHO or mercury halide compounds without ligands). MHC (970, 460, and 521 metal centres as HgCl2, HgBr2, and HgI2, respectively) and MHO (419, 141, and 201 metal centres as HgCl2, HgBr2, and HgI2, respectively) were structurally investigated. The coordination number, polymerization mode, coordination geometry of the metal centre, type of donor atom in ligands, and the chelation mode of the ligand for all MHC and MHO compounds were extracted as effective factors in inorganic and organic units. To rationalize the effect of ICE in the design of the coordination sphere, eleven new mercury halide complexes, including the ester ligands of L-1, naphthalene-5-yl nicotinate (complexes 1-3), L-2, naphthalene-6-yl nicotinate (complexes 4-6), L-3, naphthalene-5-yl pyrazine-2-carboxylate (complexes 7-9), and L-4, naphthalene-6-yl pyrazine-2-carboxylate (complexes 10-11) were synthesized and fully characterized. The various parameters of substitution, C-H to nitrogen replacement, counteranion, and symmetry effects were investigated for all of the complexes. The results show that there is a meaningful relationship between inorganic and organic units. According to the findings of the CSD and ICSD analyses, most of the complexes obeyed the same relationship. Despite the predominant role of the inorganic unit in determining the coordination geometry, the organic unit can also change the coordination sphere of complexes with one major effect or the cooperativity of minor effects.
机译:从无机晶体工程(ICE)的观点来看,金属中心的协调球体可以受到复合物中无机和有机单元的两种主要部分的影响。数据库研究可以在解释与这些部件相关的各种参数之间的关系中发挥重要作用。我们首次通过对汞(II)卤化物化合物的无机晶体结构数据库(ICSD)和剑桥结构数据库(CSD)的伴随的研究来调查了这种关系。 CSD分析的结果分为两类金属卤化物配合物(MHC或汞卤化物化合物用配体),仅包括金属卤化物(MHO或汞卤化物化合物,没有配体)。在结构上研究了MHC(970,460和521个金属中心,分别为HgCl2,HgBr2和Hgi2,分别为MHO(419,141和201金属中心,分别为HgCl 2,HgBr2和Hgi2)。萃取配体中的金属中心的配位,聚合模式,配体类型的配体,以及所有MHC和MHO化合物的配体的螯合模式作为无机和有机单位的有效因子。为了合理化冰在协调球的设计中的影响,11个新的汞卤化物配合物,包括L-1的酯配体,萘-5-基烟酸叔硝基膦(络合物1-3),L-2,萘-6- Yl烟酸胺(复合物4-6),L-3,萘-5-基吡嗪-2-羧酸盐(配合物7-9),L-4,萘-6-基吡嗪-2-羧酸盐(复合物10-11 )被合成并充分表征。研究了各种取代参数,C-H对氮置换,对抗和对称效应进行了所有复合物。结果表明,无机和有机单位之间存在有意义的关系。根据CSD和ICSD分析的调查结果,大多数复合物遵循了相同的关系。尽管无机单元在确定协调几何形状方面具有主要作用,但有机单元还可以用一个重大效应或微小效应的合作改变复合物的协调球体。

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