Analytical Electron Microscopy and the Problem of Potassium Diffusion
- 1 December 1988
- journal article
- Published by Cambridge University Press (CUP) in Clays and Clay Minerals
- Vol. 36 (6) , 498-504
- https://doi.org/10.1346/ccmn.1988.0360603
Abstract
Diffusion of K during analytical electron microscopy (AEM) results in anomalously low count rates for this element. As the analysis area and specimen thickness decrease, count rates become disproportionally lower. Adularia and muscovite show different diffusion profiles during AEM; for muscovite a strong dependence of diffusion on crystallographic orientation has been observed. Conditions giving rise to reliable chemical data by AEM are the use of a wide scanning area (>800 × 800 Å) and/or large beam size to reduce the effect of diffusion of alkali elements, a specimen thickness greater than about 1000 Å, constant instrument operating conditions, and the use of a homogeneous, well-characterized standard sample. The optimum thickness range was obtained by determining the element intensity ratio vs. thickness curve for given operating conditions. The standard and unknown should have a similar crystal structure and, especially for strongly anisotropic minerals such as phyllosilicates, a similar crystallographic orientation with respect to the electron beam.Keywords
This publication has 10 references indexed in Scilit:
- Quantitative X-ray microanalysis of thin specimens in the transmission electron microscope; a reviewMineralogical Magazine, 1987
- Cation-diffusion-induced characteristic beam damage in transmission electron microscope images of micasUltramicroscopy, 1986
- Transmission and Analytical Electron Microscopy of the Smectite-To-Illite TransitionClays and Clay Minerals, 1986
- Evidence for syntectonic crystallization for the mudstone to slate transition at Lehigh gap, Pennsylvania, U.S.A.Journal of Structural Geology, 1986
- Oxidation and microprobe-induced potassium mobility in iron-bearing phyllosilicates from the Otago schists, New ZealandLithos, 1981
- An analytical electron microscopic study of a pyroxene-amphibole intergrowthContributions to Mineralogy and Petrology, 1981
- A microstructural and microchemical study of cleavage lamellae in a slateJournal of Structural Geology, 1981
- Microstructure and cleavage development in selected slatesContributions to Mineralogy and Petrology, 1978
- Analytical Electron Microscopy of MineralsPublished by Springer Nature ,1976
- The quantitative analysis of thin specimensJournal of Microscopy, 1975