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Real-time Monitoring technology of Mass spectrometry

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Real-time Monitoring technology of Mass spectrometry. Speaker : Achong. Outline. IMS PTR-MS SIFT-MS Application of IMS IMS-TOF IMS-IMS-TOF Application of PTR-MS PIT-MS. Real-time Monitoring Mass spectrometry. Environmental science Biochemical and medical diagnosis - PowerPoint PPT Presentation
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Real-time Monitoring technology of Mass spectrometry Speaker : Achong
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Page 1: Real-time Monitoring technology  of Mass spectrometry

Real-time Monitoring technology of Mass spectrometry

Speaker : Achong

Page 2: Real-time Monitoring technology  of Mass spectrometry

Outline

IMS

PTR-MS

SIFT-MS

Application of IMS

IMS-TOF

IMS-IMS-TOF

Application of PTR-MS

PIT-MS

Page 3: Real-time Monitoring technology  of Mass spectrometry

Real-time Monitoring Mass spectrometry

Environmental science

Biochemical and medical diagnosis

Workplace safety

Security check

Page 4: Real-time Monitoring technology  of Mass spectrometry

EI source

Analysis of atmospheric air is especially challenging using electron ionization mass spectrometry, because the gas loading of the ion source by N2 and O2 (as well as water vapor) can be excessive.

70 ev

Page 5: Real-time Monitoring technology  of Mass spectrometry

Real-time Monitoring MS

Soft chemical ionization

Measurement in Real-Time

Without pre-concentration system

Page 6: Real-time Monitoring technology  of Mass spectrometry

I. IMS (ion mobility spectrometer)

Ion mobility mass spectrometry (Eiceman,1991; Baumbach, 2001)

Analytical Chemistry, A390-A397, November 1, 2004

Page 7: Real-time Monitoring technology  of Mass spectrometry

Ion mobility (K)

Journal of Bimolecular Technique, Vol.13, Issue 2, June, 2002

Page 8: Real-time Monitoring technology  of Mass spectrometry

Ion Mobility-Mass Spectroscopy

Witt & Bowers: JACS. 2000, 122, 3458.

Page 9: Real-time Monitoring technology  of Mass spectrometry

Ion mobility mass spectrometry

Advantages:Multiform ion source could be applied.Some isomer could be separated.Real-time measurement

Disadvantages:Lower mass resolutionLower sensitivity to allow accurate analysis of complex mixtures.Standard is requisite

Page 10: Real-time Monitoring technology  of Mass spectrometry

II. PTR-MS (proton-transfer reaction)

Proton-transfer reaction-mass spectrometry (Lagg A, Taucher J, Hansel A, Lindinger W. 1994.)

http://info.uibk.ac.at/c/c7/c722/umwelt/html/animation.html

Page 11: Real-time Monitoring technology  of Mass spectrometry

proton-transfer reaction

H3O+ + R → RH+ + H20

[RH+]

= [H3O+]o(1 - e-k[R]t)

= [H30+]o[R]kt

J. Mass Spectrom Ion Processes, 173 (1998) 191-241

Page 12: Real-time Monitoring technology  of Mass spectrometry

J. Mass Spectrom Ion Processes, 173 (1998) 191-241

Page 13: Real-time Monitoring technology  of Mass spectrometry

J. Mass Spectrom Ion Processes, 173 (1998) 191-241

Page 14: Real-time Monitoring technology  of Mass spectrometry

PTR mass spectrometry

Advantages:Soft ionization and low matrix effectReal-time measurementLow limit of detection (0.5 ppbv for 1-min measurements)

Disadvantages:A large number of VOCs could not be identified and

quantified.

Page 15: Real-time Monitoring technology  of Mass spectrometry

III. SIFT-MS (selected ion flow tube)

http://www.syft.com/

Adams NG, Smith D. 1976. Spanel P ,Smith D. 1995.

Page 16: Real-time Monitoring technology  of Mass spectrometry
Page 17: Real-time Monitoring technology  of Mass spectrometry

SIFT mass spectrometry

Advantages:application of multiple reagent ions (H3O+, NO+ and O2+)quantification in real-time discriminate isomers in Real-Time

Disadvantages:The kinetic parameters of the reagent ion and the analyte ion must be known.

Selected ion flow tube mass spectrometry for no-line trace gas analysis David Smith and Patrik SpanelReference : Mass Spectrometry Reviews, 2005, 24, 661– 700

Page 18: Real-time Monitoring technology  of Mass spectrometry

Application of IMS

IMS/TOF

IMS/IMS/TOF

Page 19: Real-time Monitoring technology  of Mass spectrometry

Ion Mobility/TOFMS

Anal. Chem. 2003, 75,6202-6208

Page 20: Real-time Monitoring technology  of Mass spectrometry

Pulse sequence of IMS & TOF

Anal. Chem. 2003, 75,6202-6208

Page 21: Real-time Monitoring technology  of Mass spectrometry

example spectrum

Analytical Chemistry, 1998 Vol. 70, No. 11, June 1,

Page 22: Real-time Monitoring technology  of Mass spectrometry

Anal. Chem. 2003, 75,6202-6208

Page 23: Real-time Monitoring technology  of Mass spectrometry

collision-induced dissociation

http://proteomics.med.ncku.edu.tw/proteomicsweb/Liao_94_1007.ppt

Page 24: Real-time Monitoring technology  of Mass spectrometry

IMS/IMS/TOF

Anal. Chem. 2006, 78,4161-4174

Page 25: Real-time Monitoring technology  of Mass spectrometry

operational mode A

Anal. Chem. 2006, 78,4161-4174

Page 26: Real-time Monitoring technology  of Mass spectrometry

operational mode B

Anal. Chem. 2006, 78,4161-4174

Page 27: Real-time Monitoring technology  of Mass spectrometry

operational mode C

Anal. Chem. 2006, 78,4161-4174

Page 28: Real-time Monitoring technology  of Mass spectrometry

Application of PTRMS

PIT-MS

Page 29: Real-time Monitoring technology  of Mass spectrometry

PIT-MS

http://cires.colorado.edu/~gouw/Instruments/PITMS/PITMS.html

Page 30: Real-time Monitoring technology  of Mass spectrometry

PIT-MSproton-transfer ion trap-mass spectrometry

J Am Soc Mass Spectrom 2005, 16, 1316–1324

Page 31: Real-time Monitoring technology  of Mass spectrometry

CID process on ion-trap MS

http://www.chem.agilent.com/cag/Other/IonTrap_fig2.gif

Page 32: Real-time Monitoring technology  of Mass spectrometry

calibration measurement of the PIT-MS

J Am Soc Mass Spectrom 2005, 16, 1316–1324

Page 33: Real-time Monitoring technology  of Mass spectrometry

single CID measurement of m/z 59

ambient air pure acetone pure propanal

J Am Soc Mass Spectrom 2005, 16, 1316–1324

Page 34: Real-time Monitoring technology  of Mass spectrometry

CID of propanal and acetone

m/z=59 m/z=41 m/z=31

J Am Soc Mass Spectrom 2005, 16, 1316–1324


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