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Chemical state speciation by resonant Raman scattering

机译:共振拉曼散射的化学态形态

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In the resonant Raman scattering (RRS) process the emitted photon exhibits a continuous energy distribution with a high energy cutoff limit. This cutoff energy depends on the chemical state of the element under examination. In the present work, the possibility of identifying the chemical state of V atoms by employing RRS spectroscopy with a semiconductor Si(Li) detector is investigated. A proton induced Cr Kalpha x-ray beam was used as the incident radiation, having a fixed energy lower than the V K-absorption edge. The net RRS distributions extracted from the energy dispersive spectra of metallic V and its compound targets were simulated by an appropriate theoretical model. The results showed the possibility of employing RRS spectroscopy with a semiconductor detector for chemical speciation studies. [References: 27]
机译:在共振拉曼散射(RRS)过程中,发出的光子表现出具有高能量截止极限的连续能量分布。截止能量取决于所检查元素的化学状态。在当前的工作中,研究了通过使用带有半导体Si(Li)检测器的RRS光谱识别V原子化学状态的可能性。使用质子感应的Cr Kalpha X射线束作为入射辐射,其固定能量低于V K吸收边缘。通过适当的理论模型模拟了从金属V及其复合靶的能量色散谱中提取的净RRS分布。结果表明,将RRS光谱与半导体检测器一起用于化学形态研究的可能性。 [参考:27]

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