Parsons J G, Lopez M L, Castillo-Michel H, Peralta-Videa J R, Gardea-Torresdey J L
Department of Chemistry, University of Texas at El Paso, 500 W University Ave., El Paso, Texas 79968, USA.
Appl Spectrosc. 2009 Aug;63(8):961-70. doi: 10.1366/000370209788964359.
The speciation of elements without pre-edge features preformed with X-ray absorption near edge structure (XANES) can lead to problems when the energy difference between two species is small. The speciation of arsenic (As) in plant samples was investigated using the mixtures As2S3/As2O5, As2S3/As2O3, or As2O3/As2O5. The data showed that the energy separation (eV) between As2O5 and As2S3 was 5.8, between As2O3 and As2O5 was 3.6, and between As2S3 and As2O3 was 2.1. From the intensity of the white-line feature and the concentration of As species, calibration curves showing a limit of detection of approximately 10% were generated. In addition, an error of +/-10% was determined for the linear combination-XANES (LC-XANES) fitting technique. The difference between the LC-XANES fittings and calculations from the calibration curves was <10%. The data also showed that the speciation of As in a sample can be determined using EXAFS (extended X-ray absorption fine structure). Finally, it was also shown that both EXAFS and XANES of the sample should be examined to determine the true speciation of an element. Even though there is a difference of 2 eV between As(III) bound to O and As(III) bound to S, in the EXAFS region the As(III)-S and As(III)-O ligands are clearly visible. However, distinction between the As(III)-O and As(V)-O ligands in the EXAFS spectra was not clearly visible in this study.
对于通过X射线吸收近边结构(XANES)进行的无预边特征元素的形态分析,当两种物种之间的能量差很小时可能会出现问题。使用As2S3/As2O5、As2S3/As2O3或As2O3/As2O5混合物研究了植物样品中砷(As)的形态。数据表明,As2O5与As2S3之间的能量分离(eV)为5.8,As2O3与As2O5之间为3.6,As2S3与As2O3之间为2.1。根据白线特征的强度和As物种的浓度,生成了检测限约为10%的校准曲线。此外,确定线性组合-XANES(LC-XANES)拟合技术的误差为±10%。LC-XANES拟合与校准曲线计算之间的差异<10%。数据还表明,可以使用扩展X射线吸收精细结构(EXAFS)确定样品中As的形态。最后,还表明应同时检查样品的EXAFS和XANES以确定元素的真实形态。尽管与O结合的As(III)和与S结合的As(III)之间存在2 eV的差异,但在EXAFS区域中,As(III)-S和As(III)-O配体清晰可见。然而,在本研究中,EXAFS光谱中As(III)-O和As(V)-O配体之间的区别并不明显。