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Zeitschrift für Physikalische Chemie

International journal of research in physical chemistry and chemical physics

Editor-in-Chief: Rademann, Klaus


IMPACT FACTOR 2018: 0.975
5-year IMPACT FACTOR: 1.021

CiteScore 2018: 1.20

SCImago Journal Rank (SJR) 2018: 0.327
Source Normalized Impact per Paper (SNIP) 2018: 0.391

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2196-7156
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Volume 222, Issue 1

Issues

Sensitive Absorption Methods for Quantitative Gas Phase Kinetic Measurements. Part 1: Frequency Modulation Spectroscopy

Gernot Friedrichs
Published Online: 2009-09-25 | DOI: https://doi.org/10.1524/zpch.2008.222.1.1

Frequency modulation spectroscopy (FMS) and cavity ringdown spectroscopy (CRDS) are sensitive absorption based detection methods that have found widespread applications in gas phase reaction kinetics. In part 1 of this review, the theoretical foundations of FMS are addressed with a special emphasis on time-resolved quantitative measurements of concentration profiles. A complementary review of CRDS can be found in part 2 (Z. Phys. Chem. 222 (2008) 31–61). Practical aspects, possible pitfalls, attainable sensitivities, and modern trends are discussed. Kinetic studies based on FMS measurements as a time-resolved detection tool are briefly reviewed and a bibliography with more than a hundred entries is included to facilitate the access to the large body of original literature.

Keywords: Review; Frequency Modulation Spectroscopy; Time-Resolved; Reaction Kinetics

About the article

Received: 2007-09-05

Accepted: 2007-11-21

Published Online: 2009-09-25

Published in Print: 2008-01-01


Citation Information: Zeitschrift für Physikalische Chemie, Volume 222, Issue 1, Pages 1–30, ISSN (Online) 2196-7156, ISSN (Print) 0942-9352, DOI: https://doi.org/10.1524/zpch.2008.222.1.1.

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Citing Articles

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[1]
Michael Stuhr, Nancy Faßheber, and Gernot Friedrichs
Optics Express, 2019, Volume 27, Number 19, Page 26499
[3]
Nancy Faßheber, Marvin C. Schmidt, and Gernot Friedrichs
Proceedings of the Combustion Institute, 2017, Volume 36, Number 1, Page 607
[4]
Martin Suter and Martin Quack
Applied Optics, 2015, Volume 54, Number 14, Page 4417
[5]
Nancy Faßheber, Gernot Friedrichs, Paul Marshall, and Peter Glarborg
The Journal of Physical Chemistry A, 2015, Volume 119, Number 28, Page 7305
[6]
S. Cheskis and A. Goldman
Progress in Energy and Combustion Science, 2009, Volume 35, Number 4, Page 365
[7]
X. Liu, Y. Xu, Z. Su, W. S. Tam, and I. Leonov
Applied Physics B, 2011, Volume 102, Number 3, Page 629
[8]
Gernot Friedrichs, Mark Colberg, Johannes Dammeier, Tobias Bentz, and Matthias Olzmann
Physical Chemistry Chemical Physics, 2008, Volume 10, Number 43, Page 6520
[9]
Gernot Friedrichs
Zeitschrift für Physikalische Chemie, 2008, Volume 222, Number 1, Page 31

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