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Samenvatting

Samenvatting - Mass Spectrometry in Forensics

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Voorbeeld 3 van de 24 pagina's

Samenvatting van het vak Mass Spectrometry in Forensics dat gegeven wordt aan avans hogeschool in het 3e leerjaar van de opleiding chemie onder de major forensisch laboratoriumonderzoek. Dit vak is deel van de specialisatie forenisc chemistry.

Voorbeeld van de inhoud

MASS SPECTROMETRY IN
FORENSICS
LECTURE 1: INTRODUCTION TO MASS SPECTROMETRY
- A method to determine the m/z of a charged molecule or a charged fragment of
that molecule.
- The mass spectrometer measures the m/z and the relative abundances of ions.
(relative abundances = this fragment u will see the most)
 m  atomic mass units.
 z  number of elemental charged (z = 1, 2, 3, …)

Principle of Mass Spectrometry
- a moving current is deflected in a magnetic field.




3 essential parts
- Ion source  where the molecule is introduced. (ionization)
- Mass selection  (analyzer)
- Ion detection  (detector)
Ms operates in high vacuum.

Advantage of Each System
- GC/MS  definitive answer, accepted, spectral library searching.
- LC/MS  analytical/prep, MW answer.
- CE/MS  rapid, high sensitivity analysis.
- SFC/MS  ease of sample recovery.
- LC/MS/MS  structural information, trace metabolites ID.

Overview of a MS

- A current (+ or -) with velocity v entering a
perpendicular genetic field will be deflected
according to the so-called right-hand-rule.
- Low mass takes a hair pin, High mass goes right on.

,GC-MS IONISATION TECHNIQUES
GC-MS is suited for small molecules. (Volatile, small organic compounds, not proteins RNA
ect)
- Ionization modes:
 Electron ionization (electron impact ionization)
 Chemical ionization.
- Fragmentation reactions

EI-ionization
- Destroy into fragments and reconstruct the molecule.




 The EI source
- Molecular ion is radical (one electron unpaired, odd number of electrons).
- Many fragmentation.

EI source reaction
 M + e- (70 eV)  M+° + 2e-
- Results in:
 Molecular ion is radical (odd number of electrons)
 Many fragments
 Molecular ion; sometimes NOT present in the mass spectrum.
 Fragments give structural information (like a jigsaw puzzle of a molecule)

Electron Ionization (EI)
- The fragmentation with Electron Ionization (EI) is reproducible.
 The same fragmentation pattern is found in all EI MS equipment (with 70 eV).
- An EI MS spectrum and be compared with a library of MS spectra (database).
 The most likely molecular formula will be presented.
- EI mass spectrum can be regarded as a fingerprint of a compound.



CI source:
 Ionise a gass, form complex [M +H]+ or [M +NH4]+
- [M +H]+ is a Pseudomolecular ion (Quasi molecular ion)
 One mass unit higher.
 Number of electrons = as in the original molecule (even number of
electrons)
- Less fragmentation

, - Gives information on the molecular mass.
- Reagent gass (~1 mbar)
 Methane, ammonia, isobutane.
 Energized by electrons (100-200 eV)

- Proton transfer (that’s the ionization here)
- M + CH5+  M + CH5+ becomes M + CH5+  [M +H]+ CH4
- Fragmentation between EI and CI is totally different (pagina met de 2
chramotogrammen)

GC-MS ANALYZER TYPES

Quadrupole mass analyzer
- Creates a magnetic field,
compound has to reach the
detector. If a compound is not
selected it will leave the
magnetic field. Only one
compound (mass) will reach the
detector.
- A quadrupole acts as a mass
filter by generating a magnetic
field.
- A DC and a RF potential is
applied on the rods.



Time-of-flight MS (TOF)
- Ion will go through the tube
with certain velocity.
- Fragments with a lower
mass will reach the
detector first.
- Suitable for large
compounds.
- The reflector/ mirror device
to give all ions the kinetic energy + focus to detector.



GC-MS DETECTOR TYPE

MS ion Detector
- Ions will come into the cone
and it will multiply the
electrons and the signal will
be stronger because of the
cone.

Inhoudsopgave

  1. 01 Lecture 1: Introduction to Mass spectrometry 1
    1. GC-MS IoNISATION TECHNIQUES 2
    2. GC-MS Analyzer types 3
    3. GC-MS Detector type 3
    4. Fragmentation 4
    5. isotopes 4
    6. What is the mass of a molecule 4
  2. 02 Lecture 2 part 1: Introduction to LC-MS 6
    1. electrospray ionization (ESI) 6
    2. Atmospheric Pressure chemical ionization (APCI) 8
    3. Matrix assisted laser desorption ionization (maldi) 8
  3. 03 Lecture 2 part 2: LC-MS Analysers 9
    1. Ion trap analyzer (LR-MS) 9
    2. Orbitrap (HR-MS) 10
    3. Single quadrupole 10
    4. Triple quadrupole 11
    5. Tandem Mass Spectrometry (MS/MS): triple quadrupole 11
    6. Time of Flight 11
    7. QTOF 12
  4. 04 Lecture 3: Basic fragmentation mechanisms in mass spectrometry 12
    1. Nitrogen rule 12
    2. fragmentation reactions in EI 13
  5. 05 Lecture 4: ION SELECTION IN LC-MS 18
    1. ion suppression in LC-MS 18
    2. stable isotope labelling in LC-MS 19
    3. Mass accuracy 20

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27 maart 2026
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Samenvatting
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