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Dive into the research topics where Judit Zador is active.

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Featured researches published by Judit Zador.


Journal of Physical Chemistry A | 2009

Temperature-dependent kinetics of the vinyl radical (C2H3) self-reaction.

Huzeifa Ismail; Paul R. Abel; William H. Green; Askar Fahr; Leonard E. Jusinski; Adam M. Knepp; Judit Zador; Giovanni Meloni; Talitha M. Selby; David L. Osborn; Craig A. Taatjes

The rate coefficient for the self-reaction of vinyl radicals has been measured by two independent methods. The rate constant as a function of temperature at 20 Torr has been determined by a laser-photolysis/laser absorption technique. Vinyl iodide is photolyzed at 266 nm, and both the vinyl radical and the iodine atom photolysis products are monitored by laser absorption. The vinyl radical concentration is derived from the initial iodine atom concentration, which is determined by using the known absorption cross section of the iodine atomic transition to relate the observed absorption to concentration. The measured rate constant for the self-reaction at room temperature is approximately a factor of 2 lower than literature recommendations. The reaction displays a slightly negative temperature dependence, which can be represented by a negative activation energy, (E(a)/R) = -400 K. The laser absorption results are supported by independent experiments at 298 K and 4 Torr using time-resolved synchrotron-photoionization mass-spectrometric detection of the products of divinyl ketone and methyl vinyl ketone photolysis. The photoionization mass spectrometry experiments additionally show that methyl + propargyl are formed in the vinyl radical self-reaction, with an estimated branching fraction of 0.5 at 298 K and 4 Torr.


Archive | 2017

Reaction Mechanisms of R and QOOH Radicals Produced in Low-Temperature Oxidation of Butanone.

Rebecca L. Caravan; Brandon Rotavera; Ewa Papajak; Ivan O. Antonov; Krupa Ramasesha; Judit Zador; David L. Osborn; Craig A. Taatjes


Archive | 2016

Kinetics and Spectroscopy of a QOOH Reactive Intermediate.

David L. Osborn; Craig A. Taatjes; Judit Zador; John D. Savee; Leonid Sheps; Oliver Welz


Archive | 2015

the Multichannel Reaction of O(3P) with Cyclopentene.

John D. Savee; Judit Zador; Xiaohu Li; Ahren W. Jasper; Craig A. Taatjes; David L. Osborn


Archive | 2013

DETAILED ISOMER-RESOLVED KINETIC STUDY OF LOW-TEMPERATURE AUTOIGNITION CHEMISTRY OF PROPANE.

Leonid Sheps; Oliver Welz; Judit Zador; John D. Savee; David L. Osborn; Craig A. Taatjes; Michael P. Burke; Franklin Goldsmith; Stephen J. Klippenstein


Archive | 2012

Low-temperature oxidation chemistry of 1-butanol: A combined photoionization mass spectrometry and quantum-chemical/master-equation study.

Oliver Welz; Judit Zador; John D. Savee; Leonid Sheps; David L. Osborn; Craig A. Taatjes; Stephen J. Klippenstein


Archive | 2012

Pathways in the Low-Temperature Oxidation Chemistry of Alcohols.

Oliver Welz; Judit Zador; John D. Savee; Arkke J. Eskola; Leonid Sheps; David L. Osborn; Craig A. Taatjes


Archive | 2012

Low-Temperature Combustion Chemistry of 1-Butanol: A Synchrotron Photoionization Mass Spectrometry and Theoretical Study.

Craig A. Taatjes; Oliver Welz; Judit Zador; Leonid Sheps; John D. Savee; David L. Osborn; Subith Vasu; Stephen J. Klippenstein


Archive | 2012

High-pressure low-temperature combustion chemistry: a combined experimental theoretical and modeling study of propane oxidation.

Leonid Sheps; Oliver Welz; Judit Zador; Craig A. Taatjes; Michael P. Burke; Franklin Goldsmith; Stephen J. Klippenstein


Archive | 2012

QOOH decomposition and the QOOH %2B O2 reaction: Direct experimental investigation and theory.

Judit Zador; Haifeng Huang; Oliver Welz; David L. Osborn; Craig A. Taatjes; Johan Zetterber

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Craig A. Taatjes

Sandia National Laboratories

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David L. Osborn

Sandia National Laboratories

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Oliver Welz

Sandia National Laboratories

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John D. Savee

Sandia National Laboratories

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Leonid Sheps

Sandia National Laboratories

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James A. Miller

Argonne National Laboratory

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Haifeng Huang

Sandia National Laboratories

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Giovanni Meloni

University of San Francisco

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