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Extended X-ray absorption fine structure data analysis of copper (II) hydroxamic acid mixed ligand complexes

机译:铜(II)羟肟酸混合配体复合物的延长X射线吸收细结构数据分析

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The X-ray absorption spectra of copper mixed ligand complexes, having hydroxamic acid as one of the ligands, have been recorded at the K-edge of copper at BL-8 Dispersive EXAFS beamline at the 2.5 GeV INDUS-2 Synchrotron, RRCAT, Indore, India. For the analysis of EXAFS data, crystallographic data of the complex or of its analog is required, which is not available. Hence, for the analysis of EXAFS data, theoretical EXAFS data of the studied complexes have been generated using the EXAFS equation employing computer software program Mathcad. Firstly, the experimental data has been processed using the computer program Athena to obtain the normalized absorption versus energy data. From the experimental EXAFS data, the phase shift parameter (an energy independent constant δ) has been computed using Lytle, Sayers and Stern's (LSS) method. The backscattering amplitude has been taken from the available theoretical tabulations and other parameters have been taken from crystallographic data of the copper metal. Fourier transforms of both the experimental and theoretical data have been computed, and the two Fourier transforms are found to agree with each other for all the complexes. The position of the first peak in the Fourier transform gives the value of the first shell bond length, which is shorter than the actual bond length as a result of energy dependence of the phase factor (δ(k)) in the sine function of the EXAFS equation. Since, the Fourier transform method and LSS method both are uncorrected for phase and other parameters of the EXAFS equation, the present method gives phase uncorrected bond length of the first coordination shell.
机译:铜混合配位体配合物的X射线吸收光谱中,具有氧肟酸作为配位体之一,已被记录在在BL-8色散EXAFS射束线铜的K边缘在2.5电子伏特INDUS-2同步,RRCAT,多尔, 印度。为EXAFS数据的分析,所述复合物或其类似物的晶体学数据是必需的,这是不可用的。因此,对于EXAFS数据的分析,已使用EXAFS方程使用计算机软件程序的Mathcad生成所研究的络合物的理论EXAFS数据。首先,实验数据已被使用的计算机程序雅典娜以获得归一化的吸收与能量数据处理。从实验数据EXAFS,相移参数(能量无关的常数δ)已经使用莱特尔,塞耶斯和Stern的(LSS)方法来计算。反向散射振幅已经从可用的理论表格和其它参数取已采取从铜金属的晶体学数据。实验和理论两个数据的傅立叶变换已被计算,并且所述两个傅立叶变换被发现彼此一致的所有复合物。在傅立叶变换的第一个峰的位置给出了第一壳键长,这比实际的键长为的正弦函数的相位因子的能量依赖性(δ(k))的结果更短的值EXAFS方程。因为,傅立叶变换方法和LSS方法都是未校正相和EXAFS方程的其他参数,本发明的方法给出了第一协调壳的未校正相键长。

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