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Titlebook: Electron Energy-Loss Spectroscopy in the Electron Microscope; R.F. Egerton Book 2011Latest edition Springer Science+Business Media, LLC 20

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https://doi.org/10.1007/978-3-476-03429-8n these atoms. The technique is therefore referred to as . electron energy-loss spectroscopy (HREELS) and is used to study the physics and chemistry of surfaces and of adsorbed atoms or molecules. Although it is an important tool of surface science, HREELS uses concepts that are somewhat different t
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porates these new developments, as well as advances in electron-scattering theory, spectral and image processing, and recent applications in fields such as nanotechnology. The appendices now contain a listing of inelastic mean free paths and a description of more than 20 MATLAB programs for calculating EELS data..978-1-4899-8649-8978-1-4419-9583-4
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An Introduction to EELS,n these atoms. The technique is therefore referred to as . electron energy-loss spectroscopy (HREELS) and is used to study the physics and chemistry of surfaces and of adsorbed atoms or molecules. Although it is an important tool of surface science, HREELS uses concepts that are somewhat different t
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Electron Energy-Loss Spectroscopy in the Electron Microscope978-1-4419-9583-4
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TEM Applications of EELS,ined through the analysis of spectral fine structure is then discussed, and a final section shows how EELS has been applied to a few selected materials systems. Meanwhile, Table 5.1 lists the information obtainable by energy-loss spectroscopy and by alternative high-resolution methods.
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Energy-Loss Instrumentation,ic crystalline specimen, the procedure would have to be repeated at different specimen orientations. Even if technically feasible, such measurements would involve storing a vast amount of information, so in practice the acquisition of energy-loss data is restricted to the following categories (see Fig. 2.1):
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