David J Robichaud
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Explore the profile of David J Robichaud including associated specialties, affiliations and a list of published articles.
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22
Citations
70
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Recent Articles
11.
Clark J, Nimlos M, Robichaud D
J Phys Chem A
. 2014 Dec;
119(3):501-16.
PMID: 25513721
The bimolecular thermal reactions of carboxylic acids were studied using quantum mechanical molecular modeling. Previous work1 investigated the unimolecular decomposition of a variety of organic acids, including saturated, α,β-unsaturated, and...
12.
Robichaud D, Scheer A, Mukarakate C, Ormond T, Buckingham G, Ellison G, et al.
J Chem Phys
. 2014 Jun;
140(23):234302.
PMID: 24952536
The unimolecular thermal decomposition mechanisms of o-, m-, and p-dimethoxybenzene (CH3O-C6H4-OCH3) have been studied using a high temperature, microtubular (μtubular) SiC reactor with a residence time of 100 μs. Product...
13.
Ormond T, Scheer A, Nimlos M, Robichaud D, Daily J, Stanton J, et al.
J Phys Chem A
. 2014 Jan;
118(4):708-18.
PMID: 24383399
A detailed vibrational analysis of the infrared spectra of cyclopentadienone (C5H4═O) in rare gas matrices has been carried out. Ab initio coupled-cluster anharmonic force field calculations were used to guide...
14.
Clark J, Nimlos M, Robichaud D
J Phys Chem A
. 2013 Dec;
118(1):260-74.
PMID: 24295398
Quantum mechanical molecular modeling is used [M06-2X/6-311++G(2df,p)] to compare activation energies and rate constants for unimolecular decomposition pathways of saturated and unsaturated carboxylic acids that are important in the production...
15.
Vasiliou A, Kim J, Ormond T, Piech K, Urness K, Scheer A, et al.
J Chem Phys
. 2013 Sep;
139(10):104310.
PMID: 24050347
The thermal decompositions of furfural and benzaldehyde have been studied in a heated microtubular flow reactor. The pyrolysis experiments were carried out by passing a dilute mixture of the aromatic...
16.
Scheer A, Mukarakate C, Robichaud D, Nimlos M, Carstensen H, Ellison G
J Chem Phys
. 2012 Feb;
136(4):044309.
PMID: 22299873
The pyrolyses of phenol and d(5)-phenol (C(6)H(5)OH and C(6)D(5)OH) have been studied using a high temperature, microtubular (μtubular) SiC reactor. Product detection is via both photon ionization (10.487 eV) time-of-flight...
17.
Scheer A, Mukarakate C, Robichaud D, Nimlos M, Ellison G
J Phys Chem A
. 2011 Sep;
115(46):13381-9.
PMID: 21928823
The pyrolyses of the guaiacols or methoxyphenols (o-, m-, and p-HOC(6)H(4)OCH(3)) have been studied using a heated SiC microtubular (μ-tubular) reactor. The decomposition products are detected by both photoionization time-of-flight...
18.
Mukarakate C, Scheer A, Robichaud D, Jarvis M, David D, Ellison G, et al.
Rev Sci Instrum
. 2011 Apr;
82(3):033104.
PMID: 21456715
We have designed and developed a laser ablation∕pulsed sample introduction∕mass spectrometry platform that integrates pyrolysis (py) and∕or laser ablation (LA) with resonance-enhanced multiphoton ionization (REMPI) reflectron time-of-flight mass spectrometry (TOFMS)....
19.
Jarvis M, Daily J, Carstensen H, Dean A, Sharma S, Dayton D, et al.
J Phys Chem A
. 2011 Jan;
115(4):428-38.
PMID: 21218825
The pyrolysis of 2-phenethyl phenyl ether (PPE, C(6)H(5)C(2)H(4)OC(6)H(5)) in a hyperthermal nozzle (300-1350 °C) was studied to determine the importance of concerted and homolytic unimolecular decomposition pathways. Short residence times...
20.
Scheer A, Mukarakate C, Robichaud D, Ellison G, Nimlos M
J Phys Chem A
. 2010 Aug;
114(34):9043-56.
PMID: 20695633
The pyrolyses of anisole (C(6)H(5)OCH(3)), d(3)-anisole (C(6)H(5)OCD(3)), and d(8)-anisole (C(6)D(5)OCD(3)) have been studied using a hyperthermal tubular reactor and photoionization reflectron time-of-flight mass spectrometer. Gas exiting the reactor is subject...