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HPLC High Performance/Pressure Liquid Chromatography

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HPLC High Performance/Pressure Liquid Chromatography Advanced Instrumentation The System Columns Reversed Phase Chromatography Packing is nonpolar Solvent is polar ... – PowerPoint PPT presentation

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Title: HPLC High Performance/Pressure Liquid Chromatography


1
HPLC
  • High Performance/Pressure
  • Liquid Chromatography

2
Advanced Instrumentation
3
The System
4
Columns
http//www.waters.com/watersdivision/images/resour
ces/ColumnCons.gif
5
http//www.esainc.com/images/Cap_cell/HPLC_Col_Sel
.jpg
6
Reversed Phase Chromatography
  • Packing is nonpolar
  • Solvent is polar with respect to the sample.
  • Retention is the result of the interaction of the
    nonpolar components of the solutes and the
    nonpolar stationary phase - hydrophobic.

http//www.biotech.iastate.edu/facilities/protein/
hplc.html
7
Reversed Phase Chromatography - 2
  • Bonded phases made by covalently bonding a
    molecule onto a solid stationary phase like
    silica
  • Typical stationary phases are nonpolar
    hydrocarbons, waxy liquids or bonded hydrocarbons
    (such as C18, C8, C4, etc.)
  • pH range 2.5 to 7.5 ONLY (or the column degrades)
  • 60-90 of all analytical LC separations are done
    on bonded phases in the reverse phase mode.

http//www.biotech.iastate.edu/facilities/protein/
hplc.html
8
Reversed Phase Chromatography - 3
  • Solvents are polar aqueous-organic mixtures such
    as methanol-water or acetonitrile-water.
  • Elution can be either
  • Isocratic use only one buffer
  • Gradient mix in a second buffer

Overlay of the four components trace analysis
chromatograms. (A) is the isocratic elution, (B)
is the gradient elution, shadow line is the
gradient profile from 30 acetonitrile in water
to 65 acetonitrile.
9
Capacity
  • Analytical ng down to fg
  • Semi-prep mg to ug
  • Preparative g
  • Industrial kg

10
Solvents
  • Clean
  • HPLC grade
  • Filtered
  • Degassed
  • Water
  • Polar
  • Methanol or
  • Acetonitrile
  • Maintain pH
  • TFA

http//www2.okbu.edu/academics/natsci/chemistry/pe
ople/mrjordan/webtutorials/hplc/hplc.html
11
Tubing
  • Very small inner diameter
  • Consistent i.d.
  • Very strong
  • Easy to cut
  • Fittings available

http//www.microsolvtech.com/catalog/index.asp?pgN
ame19
12
Injector
http//www2.okbu.edu/academics/natsci/chemistry/pe
ople/mrjordan/webtutorials/hplc/hplc.html
13
Pumps
http//eu.shimadzu.de/products/analytics/chromato/
hplc/lcmodular/pumps/lc10advp.jpg
14
Pump schematic
http//hplc.chem.shu.edu/NEW/HPLC_Book/Instrumenta
tion/pump_hed.gif
15
Pump cycle
http//hplc.chem.shu.edu/NEW/HPLC_Book/Instrumenta
tion/pump_hed.gif
16
Detector
http//www.flowspek.ch/images/k-2600.jpg
17
Detector schematic
http//www.oup.com/images/booksites/higson/higson_
fig8.18.jpg
18
Fraction collector
http//www.lplc.com/old/instruments/img/cf1big.jpg
19
Recorder
http//www2.okbu.edu/academics/natsci/chemistry/pe
ople/mrjordan/webtutorials/hplc/images/recorder.JP
G
20
Direct to computer
http//www.unimicrotech.com.cn/images/HPLC-compute
r-007.jpg
21
HPLC Data
http//www.mac-mod.com/tr/plumbing-tr.html
22
HPLC Data
http//caffeineawareness.org/index.php
23
HPLC Data Analysis
Next lecture!
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