
【国外标准】 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
本网站 发布时间:
2024-02-28
开通会员免费在线看70000余条国内标准,赠送文本下载次数,单本最低仅合13.3元!还可享标准出版进度查询、定制跟踪推送、标准查新等超多特权!  
查看详情>>

适用范围:
5.1 Background subtraction techniques in AES were originally employed as a method of enhancement of the relatively weak Auger signals to distinguish them from the slowly varying background of secondary and backscattered electrons. Interest in obtaining useful information from the Auger peak line shape, concern for greater quantitative accuracy from Auger spectra, and improvements in data gathering techniques, have led to the development of various background subtraction techniques.5.2 Similarly, the use of background subtraction techniques in XPS has evolved mainly from the interest in the determination of chemical states (from the binding-energy values for component peaks that may often overlap), greater quantitative accuracy from the XPS spectra, and improvements in data acquisition. Post-acquisition background subtraction is normally applied to XPS data.5.3 The procedures outlined in Section 7 are popular in XPS and AES; less popular procedures and rarely used procedures are described in Sections 8 and 9, respectively. General reviews of background subtraction methods and curve-fitting techniques have been published elsewhere (1-5).65.4 Background subtraction is commonly performed prior to peak fitting, although it can be assessed (fitted) during peak fitting (active approach (6, 7)). Some commercial data analysis packages require background removal before peak fitting. Nevertheless, a measured spectral region consisting of one or more peaks and background intensities due to inelastic scattering, Bremsstrahlung (for XPS with unmonochromated X-ray sources), and scattered primary electrons (for AES) can often be satisfactorily represented by applying peak functions for each component with parameters for each one determined in a single least-squares fit. The choice of the background to be removed, if required or desired, before or during peak fitting is suggested by the experience of the analysts, the capabilities of the peak fitting software, and the peak complexity as noted above.1.1 The purpose of this guide is to familiarize the analyst with the principal background subtraction techniques presently in use together with the nature of their application to data acquisition and manipulation.1.2 This guide is intended to apply to background subtraction in electron, X-ray, and ion-excited Auger electron spectroscopy (AES), and X-ray photoelectron spectroscopy (XPS).1.3 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
标准号:
ASTM E995-16
标准名称:
Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
英文名称:
Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy标准状态:
Active-
发布日期:
-
实施日期:
出版语种:
- 推荐标准
- AS 1038.16-1996 Coal and coke - Analysis and testing Assessment and reporting of results
- AS 1085.16-1995 Railway permanent way material Cast sleeper plates
- AS 1141.16-1995 Methods for sampling and testing aggregates Angularity number
- AS 1807.16-2000 Cleanrooms, workstations, safety cabinets and pharmaceutical isolators - Methods of test Determination of sound level in cleanrooms
- AS 2001.7.16-1983 Methods of test for textiles Quantitative analysis of fibre mixtures - Binary mixtures of jute and certain animal fibres (method of determining the nitrogen content)
- AS 2362.16-1990 Automatic fire detection and alarm systems - Methods of test for actuating devices Impact test
- AS 2550.16-1997 Cranes- Safe use Mast climbing work platforms
- AS 3730.16-1991 Guide to the properties of paints for buildings Latex - Timber finish - Exterior
- ASTM D3550/D3550M-17 Standard Practice for Thick Wall, Ring-Lined, Split Barrel, Drive Sampling of Soils
- ASTM D3551-17 Standard Practice for Laboratory Preparation of Soil-Lime Mixtures Using Mechanical Mixer
- ASTM D3552-17 Standard Test Method for Tensile Properties of Fiber Reinforced Metal Matrix Composites
- ASTM D3554-20e1 Standard Specification for Track-Resistant Thermoplastic High-Density Polyethylene Insulation for Wire and Cable, 75 °C Operation
- ASTM D3556-23 Standard Guide for Deposition on Glassware During Mechanical Dishwashing
- ASTM D3557-17 Standard Test Methods for Cadmium in Water
- ASTM D3561-16(2021)e1 Standard Test Method for Lithium, Potassium, and Sodium Ions in Brackish Water, Seawater, and Brines by Atomic Absorption Spectrophotometry