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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >Reliable absorbance measurement of liquid samples in soft X-ray absorption spectroscopy in transmission mode
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Reliable absorbance measurement of liquid samples in soft X-ray absorption spectroscopy in transmission mode

机译:变速器模式下软X射线吸收光谱中液体样品的可靠吸光度测量

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In soft X-ray absorption spectroscopy in transmission mode (T-mode XAS), it is necessary to optimize the thickness of thin liquid layers for appropriate absorbance around 0.3-0.7 and keep the sample thickness flat within a photon beam. In the present work at the UVSOR Synchrotron Facility, a thin liquid layer is sandwiched between two 100 nm thick Si3N4 or SiC membranes of 2 x 2 mm(2) in a helium chamber with enough working space, and the liquid thickness is optimized by using the elasticity of the membranes under controlling the helium pressure between 0.1013 and 0.12 MPa. The flatness of the liquid sample within a photon beam is investigated with measuring position-dependent 0 K-edge T-mode XAS spectra of liquid water. In the case of the beam size of 50 mu rn and the helium pressure of 0.1090 MPa (0.1038 MPa), it is confirmed that the liquid water layer has flat thickness around 200 nm (320 nm) at the center position of 2 x 2 mm(2) sample area with allowance of +/- 350 mu m (+/- 150 mu m), where the thickness is ca 900 nm at the brim of the liquid sample area. The pre-edge vs. main edge (Pre/Main) ratio is 0.38 +/- 0.01 for the center of the sample area and becomes considerably larger than 0.38 for the off-center position. The deviation from 0.38 is caused by the inhomogeneous thickness and is evaluated in comparison with a model simulation. The Pre/Main ratio can be used to evaluate the flatness in the liquid sample thickness within the beam area of soft X-rays. Positioning of as small a beam as possible on the center of the liquid sample area is essential to obtain reliable T-mode XAS spectra with the present liquid cells. (C) 2017 Elsevier B.V. All rights reserved.
机译:在透射模式(T模式XAs)中的软X射线吸收光谱中,需要优化薄液层的厚度,以适当的吸光度约为0.3-0.7,并将样品厚度保持在光子束内。在UVSOR同步rotron设施的本作工作中,将薄的液体层夹在具有足够工作空间的氦气室中的两个100nm厚的Si3N4或SiC膜的2×2mm(2)之间,通过使用优化液体厚度在0.1013和0.12MPa之间控制氦压力下的膜的弹性。研究了光子束内的液体样品的平坦度,测量了液态水的位置依赖性0 k边缘T模式XAS光谱。在梁尺寸为50μm的梁尺寸和0.1090MPa(0.1038MPa)的氦气压力的情况下,确认液体水层在2×2mm的中心位置处具有约200nm(320nm)的平坦厚度(2)含有+/-350μm(+/-150μm)的含量的样品区域,其中厚度为液体样品区域的边缘处的Ca 900nm。对于样品区域的中心,预先边缘与主边缘(前/主要)比率为0.38 +/- 0.01,对于偏心位置变得大于0.38。偏离0.38是由不均匀厚度引起的,并与模型模拟相比评估。前/主比可用于评估软X射线的梁面积内的液体样品厚度的平坦度。将尽可能小的光束定位在液体样本区域的中心上是必不可少的,以获得具有本液体细胞的可靠的T模式XAS光谱。 (c)2017 Elsevier B.v.保留所有权利。

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