
Types of Courses
- Free
- Certificates Issued (no charge)
- In-Training Level 1 – Starting Level
- In-Training Level 2 – Daily Operations
- In-Training Level 3 – Advanced Topics
- Certificates Issued (no charge)
- Paid
- Certificates Issued
- Level #1 – Learner ($25)
- Level #2 – Professional ($50)
- Level #3 – Expert ($100)
- Certificates Issued
Presentation Sequence for Major Topics (Sections or Chapters)
- Purpose of these Courses
- Types of Course Users (XPS and Chemistry Knowledge levels)
- Common Sequence for Analyzing Samples
- History, Key People, Intro & Basics of XPS
- Terminology
- Common Applications of XPS
- Bad Data, Peak-fitting and Assignments
- Decision to use XPS on This Sample (Problem)
- Purpose of XPS Analyses (Goals)
- Decide Types of Information & Spectra Needed
- Choice of Labs (Internal or External)
- Discuss Goals and Spectra Wanted with XPS Operator
- Review Prices for XPS Analyses & Turnaround Times
- Record Instrument Geometries
- Verify Instrument Status and Last Date of Calibration Checks
- Sample Handling with Clean Tweezers, Packaging, Storage
- Glove Induced Contamination
- Sample Size and Features (positions) for Analysis
- Loading Sample and Sample Outgassing in Loadlock
- Transfer Sample to Analysis Chamber
- Check Vacuum Level and Turn ON X-rays (check ZnS position)
- Position Sample & Focus on Feature (use electron countrate)
- Types of Spectra, Profiles & Maps Possible
- Sample Degradation Checks
- Turn ON Charge Compensation, Neutralization & Control
- Test Quality of Charge Compensation of Position on Insulator
- Raw Spectra and Features of Spectra
- Consider Software Settings & Capabilities
- Choose Data Collection Settings (PEs) & Data Quality Needed
- Charge Referencing Binding Energy Scale for Insulators
- Data Processing (peak-fitting & atom%s)
- Data Chemical State Assignments, BE Tables & Interpretation
- Real World Problems & Applications
- Advanced Topics
- Makers
- Instrument Buying Factors to Consider
- Instrument Components & Features
Random List of Chapters / Sections
- Typical Sequence for Analyzing Sample
- Need to Characterize a Material
- Need to analyze real-world Problem or QC
- Have Sample
- Decide to use XPS
- Contact XPS Lab
- Can XPS Help?
- Explain my need, my goal
- Send Sample to lab
- Sample received
- Sample cut to size and laoded
- Analysis conditions decided
- Data collected
- Data moved to USB
- Data processed (IDs and Peak-fits)
- Atom%s and peak IDs
- Chemical States Assigned
- Data Interpreted
- Report made
- Report sent to me.
- I review report
- Ask questions to report writer
- Does report answer solve my problem
- Purpose and Expectations of these Courses
- History & Intro
- Types of Students
- University Lab
- Post-doc with no experience
- Post-doc trained 3-5 days by departing post-doc
- XPS applications scientist
- Contract analysis lab
- Biochemistry knowledge
- Material scientist
- Geology scientist
- Chemistry BS level
- Chemistry MS level
- Chemistry PhD level
- Theory only
- Want hands-on operation of instrument
- Want to process data, interpret data, write report
- Basics of XPS Technique
- Terminology
- Advanced Topics
- Sample
- Need reference data
- Purpose & Goal of Analysis
- XPS Labs
- XPS Jobs
- Insulators
- Chemical States
- Charge Referencing
- Charge Neutralization, Control & Compensation
- Data Quality
- Data Collection Times
- Turnaround Time
- Typical Prices
- XPS Training Courses
- Data Collection
- Data Processing
- Instrument Components & Features
- Software Components & Features
- Software Operation Videos
- Features of Spectra
- Types of Spectra
- Peak-fitting
- Peak Assignment
- Atom% Quantification
- SFs, RSFs, CSs
- Reference Data
- Sharing Data-Files & Formats
- Statistics
- Problems
- Real-World Applications & Problems
- Calibrations
- Makers
- On-Line Information
- Independent Software Makers
- Reference Books Hoffman, Hufner, Seah
- Depth Profiling
- Related Surface Chemical Analysis Techniques
- Instrument Selection and Service
Titles of Lessons – Random
- Introduction & History
- Purpose & Design of Course
- Basic Fundamental Concepts
- Terminology
- Reliability, Accuracy, & Precision
- Reliability of BEs, and Atom% Results
- Problems with BEs in NIST and Literature
- Qualitative & Semi-Quantitative Composition Analysis
- Modern XPS Instruments
- Companies that Manufacture XPS Instruments & Components
- Which Chemical Analysis Technique to use on my Problem/Material
- Areas of Technological Application
- Charge Referencing Methods
- Data Collection Settings
- Chemical States & Shifts
- Chemical States, Electronegativity, and Ligands
- Multiplet Splitting
- Spin-Orbit Coupling
- Energy Loss Peaks
- Plasmon Peaks
- Protocols for Collecting Data
- Electron Spectrum
- Examples of Spectra, Profiles and Maps
- On-line Resources & Databases
- XPS Spin-Orbit Terms (Notations)
- Material to be Analyzed – Variables
- Aspects of Practical Data Processing
- Sample Forms, Shapes, Prep, Handling, Storage
- Fully Quantitative Analysis
- Capabilities of XPS
- Ion Etching
- Ion Etching Rates
- Useful Guidance Literature – JVST series
- Spectra Interpretation
- Information Wanted – Purpose of Analysis
- Goal of Analysis
- Working With XPS Labs
- Detection Limits
- Depth of Information – XPS, AES, EDX, TofF-SIMS
- Verify Instrument Ready to Use
- Troubleshooting XPS Instrument
- Service Contracts
- Peak-fitting
- Sharing Data-files and File Formats
- Energy Scale Calibration Checks
- Transmission Function Correction Checks
- Real World Instrument Operation
- Software Operation
- Software Training
- On-site Training by Maker
- Off-site Training at Maker’s Location
- Buying XPS Instrument Checks
- Identifying Survey Spectra Peaks
- Identifying Chemical STate Peaks from Peak-fit
- Chemical State BE Tables in Books and NIST
- Make your Own BE Database
- Peak Shapes
- Electronegativity, Dielectric, BE Shifts, Chemical States, Bond Polarization
- Chemical States and Shifts
- Processing Raw Chemical Shift Spectra
- Assigning Chemical States to Peak-fit Peaks
- Valence Band
- Auger Signals
- C 1s Chemical Shifts
- Si 2p Chmical Shifts
- Physical Basis of XPS
- Instrumentation
- Monochromatic X-ray Sources
- Instrument Design
- Instrument Calibration
- Sample Degradations
- Analyzing Insulators
- Charge Neutralization, Control & Compensation
- Charge Referencing
- Using Adventitious C (1s) as Energy Reference
- Depth Profiling
- Quantification using XPS
- What XPS can NOT Do
- Limits of XPS
- Applications
- Spectrometer Calibrationces
- SFs
- Non-Traditional XPS
- Related Surface Chemical Analysis Methods
List of Existing Lessons – rough for
- Applications of XPS lesson
- Basics of XPS lesson
- Common Artifacts and Troubleshooting
- Electronegativity lesson
- Introduction to XPS lesson
- Terminology lesson – 2Q
- Detection Limits lesson
- Data Processing lesson
- Fundamentals lesson
- Monochromatic Aluminum X-rays lesson
- Principles of XPS Analysis lesson
- Sample Preparation lesson
- Data Interpretation lesson
List of Question Categories (Chapters?) to be added to COURSE #999
- Accuracy and Precision
- Artifacts
- Atom% Calculations
- Atomic Dimensions
- Auger Depth of Information
- Bad Data
- Bad Peak-fitting
- Bad Choices for FWHM
- Bad Style for Checking Calibration
- Beam Induced Degradation
- Bond Polarization
- Calibration Binding Energies
- Capabilities and Limits of XPS
- Charge Referencing Methods
- Control Neutralization, Control, & Compensation
- Chemical Shift
- Chemical States, Electronegativity, and Ligands
- Chemical State Spectra
- Chemical State
- CHI-squared
- Common Surface Contaminants
- Common Artifacts
- Companies that Manufacture XPS Instruments
- Companies that Manufacture XPS Components
- Components of an XPS Instrument
- Core-Hole Lifetimes
- Data Collection Settings
- Data-File Formtas
- Degradation
- Depth of Information
- Depth Profiling
- Detection Limits
- Dielectric Constants
- Dwell Time
- Electron Analyzers
- Electron Configuration
- Electron Detectors
- Electron Collection Lens
- Electronegativity
- Electronegativity Effects
- Electronic States
- Electronic Structure
- Electronic Terms
- Empirical Formula (no H)
- Energy Loss Peaks
- Energy Resolution
- Energy Scale Calibration
- Energy Scale Check & Calibrations
- Errors in NIST Binding Energies
- Examples of Spectra, Profiles & Maps
- Fermi Edge
- Focus Effects
- Focus Position
- Fundamentals
- Fundamental Physics of XPS
- FWHM
- Glossary of XPS Terms
- Good Style Peak-fitting
- Good FWHM
- Good Style Calibration Checking
- High Energy Resolution
- High Energy X-ray Sources
- History of XPS
- Identifying Peaks in Survey Spectra
- Identifying Peaks in Chemical State Peak-fits
- Inelastic Mean Free Path (IMFP)
- Information Derived from XPS Analyses
- Information Wanted – Purpose of Analysis
- Infrared (FT-IR) Depth of Information
- Insulator Band-Gaps
- Initial and Final States
- Instrument Operation
- Instrument Selection Factors
- Instrument Maintenance
- Instrument Service & Repair
- Ion Beam Effects
- Ion Etching
- Ion Etch Rates
- Koster-Kronig Transitions
- Lifetime of “Clean” Surface
- Magic Angle 54.7 degrees
- Making Your Own Database of Reference BEs
- Materials to be Analyzed
- Monochromatic X-ray sources
- Multiplet Splitting
- Multiplet Coupling
- Native Oxides
- Natural FWHM
- Noise
- Non-monochromatic X-ray sources
- Outgassing
- Overlapping Chemical State Peaks
- Overlapping Survey Peaks
- Overlaying Spectra
- Pass Energy Settings
- Peak-Area Ratioing
- Peak Energy Difference
- Peak Baseline (Background) Shapes
- Peak Baseline (Background) Widths
- Peak Endpoints
- Peak FWHM Choices
- Peak-fitting
- Peak-fitting Constraints
- Peak-fitting Features
- Peak-Shape Control
- Peak-Shapes
- Phosphor for X-ray Beam
- Photo-ionization Cross-Sections
- Plasmon Peaks
- Polymers
- Processing Raw Survey Spectra
- Protocols for Collecting Data
- Purpose (Goal) of Analysis
- Purpose of This Course
- Qualitiative Use of XPS
- Quantification Reliability of XPS
- Quantitation
- Quantification – Atom%s
- Raman Depth of Information
- Re-Capture of Residual UHV Gases
- Real-World Applications
- Real-World Trouble-shooting
- Reliability of XPS BEs in Books and Databases
- Reporting Experimental Details
- Residual UHV Gases
- RSFs
- Sample Charging
- Sample Degradation
- Sample Grounding
- Sample Handling
- Sample Mounting
- Sample Position Height
- Sample Prep
- Sample Shape (form)
- Sample Size
- Sample Storage
- Sample Type
- SEM-EDX Depth of Information
- Semiconductors
- Sensitivity Factors
- Service & Repair
- Shake-up Peaks
- Sharing Data-Files
- Shirley Baseline (iterated)
- Signal/Noise Ratio
- Single Crystals
- Smoothing Data
- Software Operation
- Software Supplier
- Software Features & Capabilities
- Spectra Interpretations
- Spin-Orbit Splitting
- Spin-Orbit
- Step-Size
- Surface Contamination
- Surface Shape
- Surface Roughness
- Survey Peak Identification
- Survey Spectra
- Synchrotron Based XPS
- Terminology
- Testing Atom% Quantification
- Testing Transmission Function Correction
- TFA and PCA Processing
- Theory of XPS
- Thickness of Contaminants
- ToF-SIMS Depth of Information
- Tougaard Baseline (Background)
- Tracking Instrument Calibration Binding Energies
- Transmission Function
- Ultra-High Vacuum (UHV)
- Useful Websites
- Useful Literature Review Papers
- Vacuum Levels
- Vacuum Pumping
- Valence Band Spectra
- VAMAS-ISO Data-Files
- Verify Instrument Ready to Use
- Weak Signals
- What XPS can NOT do
- Which Chemical Analysis Method to Use
- Window Size (Energy Range)
- Work Function of Materials
- Work Function of Instrument
- Working with Internal XPS Labs
- Working with External XPS Labs
- XPS Notation Terms
- X-ray Beam Shape
- X-ray Bragg Angle
- X-ray Dosage
- X-ray Energy and FWHM
- X-ray Phosphor
| M | T | W | T | F | S | S |
|---|---|---|---|---|---|---|
| 1 | 2 | 3 | 4 | |||
| 5 | 6 | 7 | 8 | 9 | 10 | 11 |
| 12 | 13 | 14 | 15 | 16 | 17 | 18 |
| 19 | 20 | 21 | 22 | 23 | 24 | 25 |
| 26 | 27 | 28 | 29 | 30 | 31 | |
Page List
- About Us
- Academic Labs
- Accuracy
- Appendix of Unreliable BEs – Briggs & Seah
- Appendix of Unreliable BEs – PHI Handbook
- Artyushkova, Baer, Cohen, Easton, Engelhard, Gengenbach, Greczynski, Mack, Morgan & Roberts
- Atom% Exam
- Atom% Quantification
- Bad Peak-fitting
- Bad Peak-fitting 3
- Barr
- BEs in Journals
- Blog
- Blog
- Book of Unreliable XPS BEs
- Cart
- Cazaux
- Certification Levels
- Charge Compensation
- Charge Compensation
- Charge Compensation Exam
- Charge Control
- Charge Correction
- Charge Neutralization
- Charge Referencing
- Charge Referencing
- Charge Referencing
- Charge Referencing Exam
- Charge Referencing Problems
- Charging
- Charging – Menu Top
- Charging2
- Checkout
- Chemical State Assignments
- Chemical State BE Shifts
- Contact
- Content restricted
- Contract Analysis Labs
- Contributors
- Core Activities
- Core Activities
- Course Completed
- Courses
- Courses – BVC
- Cros
- Davis, Anderson & Clearfield
- Demo Reel
- Depth of Information
- Donate
- Donation Confirmation
- Donor Dashboard
- Energy Scale Adjustments – “Engineer”
- Energy Scale Calibration Values – ISO
- Energy Scale Check & Calibration
- Energy Scale Exam
- Energy Scale Measurements – Monthly
- Engelhard, Baer, Kim, Gaspar
- Experiment Details
- Flood Gun Operation
- Font Sizes
- Government Labs
- Hands-on XPS Operation Test
- Home
- Huchital & McKeon
- IMFP: TPP-2M or KE^(-6)
- Industrial Labs
- Information from XPS Analyses
- Instrument Operation
- Insulator-HOPG-Screen
- ISO, VAMAS, ASTM
- σ, SFs, RSFs, IMFPs & Atom %s
- Join your new group
- Kratos-Shimadzu
- Landis & Martin
- Larson & Kelly
- Lewis & Kelly
- Logos
- Logos 4
- Management
- Members
- Methods
- Metrology
- Mission Statement
- Modified Scofield Values
- Multiplet Splitting
- My Account
- My Courses
- News
- Other Sponsors
- Our Projects
- Paquette, Caruso , Brockman, Bielefeld, Kuhn, King
- Pass Energy Effect
- Peak Area End-Points
- Peak End Points
- Peak-fit Training Test
- Peak-fitting FWHM
- PHI-Ulvac
- Precision
- Privacy Statement
- Problems & Defects
- Problems in NIST XPS Database
- Problems in XPS
- Professors Cause Problem
- Project #1 – The XPS Library
- Project #3 – Charging & Compensation
- Project #5 – SFs, RSFs, IMFPs, Atom%s
- Project #6 – Bad Peak-fitting
- Project #7 – Histograms of NIST BEs
- Project #8 – Laser-XPS
- Projects
- Protocols
- Refund and Returns Policy
- Reliability
- Repeatability
- Reproducibility
- Round Robins
- Sambe & Ramaker
- Sample Handling Guide
- Sample Preparation
- Scienta-Omicron
- Services
- Services – Camera Photo
- Silicone Oil (PDMS) Contamination
- site width 5
- Software
- Software
- Software 2
- Specs-Group
- Sponsors
- Sponsors 2
- Steering Committee
- Terminology
- test added template 4
- test page as is
- test trash page
- Thermo-Fisher Scientific
- Thin Film Analysis
- trs
- Uncertainty
- Unreliable
- Unreliable BEs
- Unreliable BEs in NIST
- Validity
- Videographer Home
- XPS School
- XPS Training 2
- XPS Users
- XRI Guidelines
- XRI Guidelines
- XRI Project #3 – Charging & Compensation
- XRI Project #4 – Charge Referencing
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