X-ray microanalysis with the environmental scanning electron microscope: interpretation of data obtained under different atmospheric conditions.

Scanning microscopy. Supplement Pub Date : 1994-01-01
D C Sigee, C Gilpin
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Abstract

X-ray microanalysis of non-biological and biological specimens was carried out in an environmental scanning electron microscope (ESEM) over a range of atmospheric conditions. Introduction of water vapour into the specimen chamber lead to direct X-ray contribution from oxygen atoms, an increase in extraneous background (causing reduced P/B ratios of other elements), X-ray absorption (also reducing P/B ratios) and broadening (skirting) of the electron beam. Similar results were obtained after introduction of an argon atmosphere. These effects were reduced under conditions of minimal chamber atmospheric pressure and maximal accelerating voltage. Because of beam skirting, quantitative X-ray microanalysis of biological specimens in a water vapour atmosphere was only valid where the sample was spread over a wide area (leading to mean elemental values for the whole preparation). Unless appropriate correction factors or changes in instrumentation can be implemented, quantitative analysis of wet specimens in ESEM cannot be applied to discrete specimens or to limited areas within a mixed sample.

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用环境扫描电子显微镜进行x射线微分析:在不同大气条件下获得的数据的解释。
在一系列大气条件下,在环境扫描电子显微镜(ESEM)下进行了非生物和生物标本的x射线微分析。将水蒸气引入样品室会导致氧原子对x射线的直接贡献,增加外来背景(导致其他元素的P/B比降低),x射线吸收(也降低P/B比)和电子束的拓宽(裙边)。引入氩气气氛后,得到了类似的结果。在最小大气压和最大加速电压条件下,这些影响减小。由于束脚,在水蒸气气氛中对生物标本进行定量x射线微分析仅在样品分布在广泛区域时有效(导致整个制备的平均元素值)。除非可以实施适当的校正因素或仪器的改变,否则ESEM中湿样品的定量分析不能应用于离散样品或混合样品中的有限区域。
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