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Tyler P Troy

Explore the profile of Tyler P Troy including associated specialties, affiliations and a list of published articles. Areas
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Articles 32
Citations 74
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Recent Articles
1.
Lu W, Metz R, Troy T, Kostko O, Ahmed M
Phys Chem Chem Phys . 2020 Jun; 22(25):14284-14292. PMID: 32555897
Electronic excitation and concomitant energy transfer leading to Penning ionization in argon-acetylene clusters generated in a supersonic expansion are investigated with synchrotron-based photoionization mass spectrometry and electronic structure calculations. Spectral...
2.
Ormond T, Baraban J, Porterfield J, Scheer A, Hemberger P, Troy T, et al.
J Phys Chem A . 2018 Jun; 122(28):5911-5924. PMID: 29893563
The nascent steps in the pyrolysis of the lignin components salicylaldehyde ( o-HOCHCHO) and catechol ( o-HOCHOH) were studied in a set of heated microreactors. The microreactors are small (roughly...
3.
Reilly N, da Silva G, Wilcox C, Ge Z, Kokkin D, Troy T, et al.
J Phys Chem A . 2018 Jan; 122(5):1261-1269. PMID: 29332391
The products of an electrical discharge containing toluene are interrogated using resonance-enhanced multiphoton ionization and laser-induced fluorescence spectroscopies. A previously unreported electronic spectrum recorded at m/z = 105, with a...
4.
Yao J, Lao D, Sui X, Zhou Y, Nune S, Ma X, et al.
Phys Chem Chem Phys . 2017 Jul; 19(34):22627-22632. PMID: 28664967
Switchable ionic liquids (SWILs) derived from organic bases and alcohols are attractive due to their applications in gas capture, separations, and nanomaterial synthesis. However, their exact solvent structure still remains...
5.
Zhao L, Yang T, Kaiser R, Troy T, Xu B, Ahmed M, et al.
Phys Chem Chem Phys . 2017 May; 19(24):15780-15807. PMID: 28504798
Two sets of experiments were performed to unravel the high-temperature pyrolysis of tricyclo[5.2.1.0] decane (JP-10) exploiting high-temperature reactors over a temperature range of 1100 K to 1600 K, Advanced Light...
6.
Stein T, Bandyopadhyay B, Troy T, Fang Y, Kostko O, Ahmed M, et al.
Proc Natl Acad Sci U S A . 2017 May; 114(21):E4125-E4133. PMID: 28484019
The growth mechanism of hydrocarbons in ionizing environments, such as the interstellar medium (ISM), and some combustion conditions remains incompletely understood. Ab initio molecular dynamics (AIMD) simulations and molecular beam...
7.
Yang T, Kaiser R, Troy T, Xu B, Kostko O, Ahmed M, et al.
Angew Chem Int Ed Engl . 2017 Mar; 56(16):4515-4519. PMID: 28328095
The hydrogen-abstraction/acetylene-addition (HACA) mechanism has been central for the last decades in attempting to rationalize the formation of polycyclic aromatic hydrocarbons (PAHs) as detected in carbonaceous meteorites such as in...
8.
Zhao L, Yang T, Kaiser R, Troy T, Ahmed M, Ribeiro J, et al.
J Phys Chem A . 2017 Jan; 121(6):1281-1297. PMID: 28088866
We investigated temperature-dependent products in the pyrolysis of helium-seeded n-dodecane, which represents a surrogate of the n-alkane fraction of Jet Propellant-8 (JP-8) aviation fuel. The experiments were performed in a...
9.
Zhao L, Yang T, Kaiser R, Troy T, Ahmed M, Belisario-Lara D, et al.
J Phys Chem A . 2017 Jan; 121(6):1261-1280. PMID: 28088860
Exploiting a high temperature chemical reactor, we explored the pyrolysis of helium-seeded n-decane as a surrogate of the n-alkane fraction of Jet Propellant-8 (JP-8) over a temperature range of 1100-1600...
10.
Yang T, Troy T, Xu B, Kostko O, Ahmed M, Mebel A, et al.
Angew Chem Int Ed Engl . 2016 Oct; 55(48):14983-14987. PMID: 27781351
Polycyclic aromatic hydrocarbons (PAHs) are omnipresent in the interstellar medium (ISM) and also in carbonaceous meteorites (CM) such as Murchison. However, the basic reaction routes leading to the formation of...