首页> 外文期刊>Journal of Science: Advanced Materials and Devices >Magnetic behavior and Raman spectroscopy of the composite system of CuCl 2·2H 2O–C 12H 9NO
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Magnetic behavior and Raman spectroscopy of the composite system of CuCl 2·2H 2O–C 12H 9NO

机译:CuCl复合系统的磁性和拉曼光谱[ce:inf loc =“ post”> 2 ·2H 2 O – C 12 H 9

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The metal–ligand nanocomposite system of CuCl2-2-benzoyl pyridine (C12H9NO) was prepared by a chemical route and its crystallographic phase has been confirmed by analyzing the X-ray diffractograms. The strain was developed in the composite due to the lattice mismatch of the two constituting components. The composite exhibits a paramagnetic behavior in the temperature range of 14–300?K with an effective magnetic moment of about 1.923?μB. This is attributed to the incomplete quenching of the orbital angular momentum. Room temperature Raman spectra of the composite and the individual components, CuCl2·2H2O and 2-BOP have been analyzed along with their respective FTIR spectra. These comparative studies have yielded some interesting information related to the structure of the composite. The observed structural, morphological and spectroscopic properties are found compatible with those obtained from the magnetic studies.
机译:通过化学路线制备了CuCl2-2-苯甲酰吡啶(C12H9NO)的金属-配体纳米复合体系,并通过分析X射线衍射图确认了其结晶相。由于两个组成成分的晶格失配,复合材料中产生了应变。该复合材料在14–300?K的温度范围内表现出顺磁行为,有效磁矩约为1.923?B。这归因于轨道角动量的不完全淬灭。分析了复合材料和各个成分CuCl2·2H2O和2-BOP的室温拉曼光谱,以及它们各自的FTIR光谱。这些比较研究得出了一些有关复合材料结构的有趣信息。发现观察到的结构,形态和光谱性质与从磁性研究获得的那些相容。

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