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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis and spectroscopic and structural studies of a new cadmium(II)-citrate aqueous complex. Potential relevance to cadmium(II)-citrate speciation and links to cadmium toxicity
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Synthesis and spectroscopic and structural studies of a new cadmium(II)-citrate aqueous complex. Potential relevance to cadmium(II)-citrate speciation and links to cadmium toxicity

机译:新型柠檬酸镉(II)水溶液配合物的合成,光谱和结构研究。与柠檬酸镉(II)形态的潜在相关性以及与镉毒性的联系

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The presence of cadmium in the environment undoubtedly contributes to an increased risk of exposure and ultimate toxic influence on humans. In an effort to comprehend the chemical and biological interactions of Cd(II) with physiological ligands, like citric acid, we explored the requisite aqueous chemistry, which afforded the first aqueous Cd(II)-citrate complex [Cd(C6H6O7)(H2O)](n) (1). Compound 1 was characterized by elemental analysis, and spectroscopically by FT-IR and Cd-113 MAS NMR. Compound 1 crystallizes in the orthorhombic space group P2(1)2(1)2(1), with a = 6.166(2) Angstrom, b = 10.508(3) Angstrom, c = 13.599(5) Angstrom, V = 881.2(5) Angstrom(3), and Z = 4. The X-ray structure of 1 reveals the presence of octahedral Cd(II) ions bound to citrate ligands in a molecular crystal lattice. Citrate acts as a tridentate binder promoting coordination to one Cd(II) through the central alcoholic moiety, one terminal carboxylate group, and the central carboxylate group. In addition, the central carboxylate kinds to three Cd(II) ions. Specifically, one of the oxygens of the central carboxylate serves as a bridge to two neighboring Cd(II) ions, while the other oxygen binds to a third Cd(II). A bound water molecule completes the coordination requirements of Cd(II). Cd-113 MAS NMR studies project the spectroscopic signature of the nature of the coordination environment around Cd(II) in 1, thus corroborating the X-ray findings. Collectively, the data at hand are in line with past solution studies. The latter predict that other similar low molecular mass Cd(II)-citrate complexes may exist in the acidic pH region, thus influencing the uptake of cadmium by living (micro)organisms, their ability to metabolize organic substrates, and possibly Cd(II) toxicity. [References: 60]
机译:毫无疑问,环境中镉的存在会增加暴露的风险,并最终对人类产生毒性影响。为了理解Cd(II)与生理配体(如柠檬酸)的化学和生物学相互作用,我们探索了必要的水化学,从而提供了第一个Cd(II)-柠檬酸盐水合物[Cd(C6H6O7)(H2O) ](n)(1)。通过元素分析和通过FT-IR和Cd-113 MAS NMR在光谱上表征化合物1。化合物1在正交空间群P2(1)2(1)2(1)中结晶,a = 6.166(2)埃,b = 10.508(3)埃,c = 13.599(5)埃,V = 881.2( 5)埃(3),Z =4。X射线结构1揭示了分子晶格中与柠檬酸盐配体结合的八面体Cd(II)离子的存在。柠檬酸盐充当三齿粘合剂,通过中央醇部分,一个末端羧酸酯基团和中央羧酸酯基团促进与一个Cd(II)的配位。另外,中心羧酸盐种类为三个Cd(II)离子。具体而言,中心羧酸盐的一个氧与两个相邻的Cd(II)离子桥接,另一个氧与第三个Cd(II)结合。结合的水分子完成了Cd(II)的配位要求。 Cd-113 MAS NMR研究预测了Cd(II)周围1配位环境的光谱特征,从而证实了X射线的发现。总的来说,手头的数据与过去的解决方案研究一致。后者预测酸性pH范围内可能存在其他类似的低分子量柠檬酸Cd(II)配合物,从而影响生物(微生物)对镉的吸收,其代谢有机底物的能力,并可能影响Cd(II)。毒性。 [参考:60]

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