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首页> 外文期刊>Applied Organometallic Chemistry >Polymer complexes. LXXVIII. Synthesis and characterization of supramolecular uranyl polymer complexes: Determination of the bond lengths of uranyl ion in polymer complexes
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Polymer complexes. LXXVIII. Synthesis and characterization of supramolecular uranyl polymer complexes: Determination of the bond lengths of uranyl ion in polymer complexes

机译:聚合物配合物。 lxxviii。 超分子铀聚合物复合物的合成与表征:聚合物络合物中铀离子键长的测定

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The UO2(II) polymer complexes (1-5) of azo dye ligands 5(4`-derivatives phenylazo)-8-hydroxy-7-quinolinecarboxaldehyde (HLx) were prepared and characterized by elemental analysis, H-1 NMR, IR spectra, thermal analysis and X-ray diffraction analysis (XRD). The molecular geometrical structures and quantum chemical of the ligands (HLx) and their tautomeric forms (D and G) were calculated. Molecular docking between the HLx ligands and their tautomeric form with two receptors of the breast cancer (1JNX) and the prostate cancer (2Q7K) was discussed. From the histogram of the HOMO-LUMO energy gap (Delta E) and the estimated free energy of binding of the receptors of prostate cancer (2Q7K) and breast cancer (1JNX) for the ligands (HLx), it is observed that the Delta E values of the ligands (HLx) increases in the order HL2 < HL3 < HL4 < HL1 < HL5. The electronic structures and coordination were determined from a framework for the modeling of the formed polymer complexes. From the IR spectra of the polymer complexes, the symmetric stretching frequency upsilon(3) values of UO22+ were used for the determination of the force constant (FU-O (in 10(-8) N/)) and the bond length (RU-O ()) of the U-O bond by using Wilson, G. F. matrix method, McGlynn & Badger's formula and El-Sonbati equations. The plot of the bond distance r(U-O) (r(1), r(2), r(3), and r(t)) vs. upsilon(3) was showed straight lines with increase in the value of upsilon(3) and decrease in r(U-O).
机译:制备偶氮染料配体5(4-衍生物苯氮氮)-8-羟基-7-喹啉羧甲醛(HLX)的UO2(II)聚合物配合物(1-5),并通过元素分析,H-1 NMR,IR光谱表征,热分析和X射线衍射分析(XRD)。计算配体(HLX)的分子几何结构和量子化学物质及其互变异构形式(D和G)。讨论了HLX配体与其互变异构形式与乳腺癌(1JNX)和前列腺癌(2Q7K)的两种受体之间的分子对接。从Homo-Lumo能量隙(Delta E)的直方图和前列腺癌(2Q7K)和乳腺癌(1JNX)的受体的估计自由能量(HLX),观察到ΔE配体(HLX)的值在HL2

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