H Chadwick
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Explore the profile of H Chadwick including associated specialties, affiliations and a list of published articles.
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Articles
18
Citations
42
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Recent Articles
1.
Morasae E, Botterell Z, Andrews S, Beaumont N, Boisseaux P, Chadwick H, et al.
J Environ Manage
. 2024 Oct;
371:122994.
PMID: 39476681
Plastic pollution is now considered globally ubiquitous, irreversible, and a planetary boundary threat. Solutions are urgently needed but their development and application are hampered by the complexity and scale of...
2.
Chadwick H, Migliorini D, Kroes G
J Chem Phys
. 2018 Aug;
149(4):044701.
PMID: 30068208
We present a comparison of ab initio molecular dynamics calculations for CHD dissociation on Pt(111) using the Perdew, Burke and Ernzerhof (PBE) functional and a specific reaction parameter (SRP) functional....
3.
Nichols B, Chadwick H, Gordon S, Eyles C, Hornung B, Brouard M, et al.
Chem Sci
. 2017 Jul;
6(4):2202-2210.
PMID: 28694950
Rotationally inelastic collisions of NO(X) with Ar are investigated in unprecedented detail using state-to-state, crossed molecular beam experiments. The NO(X) molecules are selected in the = 0.5, = 0.5, state...
4.
Brouard M, Lawlor J, McCrudden G, Perkins T, Seamons S, Stevenson P, et al.
J Chem Phys
. 2017 Jul;
146(24):244313.
PMID: 28668067
Zeeman quantum beat spectroscopy has been used to determine the thermal (300 K) rate constants for electronic quenching, rotational energy transfer, and collisional depolarization of OH(AΣ) by H. Cross sections...
5.
Brouard M, Chadwick H, Gordon S, Hornung B, Nichols B, Aoiz F, et al.
J Chem Phys
. 2016 Jun;
144(22):224301.
PMID: 27306001
The effect of orientation of the NO(X) bond axis prior to rotationally inelastic collisions with Ar has been investigated experimentally and theoretically. A modification to conventional velocity-map imaging ion optics...
6.
Brouard M, Chadwick H, Gordon S, Hornung B, Nichols B, Aoiz F, et al.
J Phys Chem A
. 2015 Sep;
119(50):12404-16.
PMID: 26413997
Rotational angular momentum orientation effects in the rotationally inelastic collisions of NO(X) with Ar have been investigated both experimentally and theoretically at a collision energy of 530 cm(-1). The collision-induced...
7.
Brouard M, Chadwick H, Gordon S, Hornung B, Nichols B, Klos J, et al.
J Chem Phys
. 2014 Nov;
141(16):164306.
PMID: 25362298
Fully quantum state selected and resolved inelastic scattering of NO(X) by krypton has been investigated. Initial Λ-doublet state selection is achieved using an inhomogeneous hexapole electric field. Differential cross sections...
8.
Chadwick H, Brouard M, Chang Y, Eyles C, McCrudden G, Perkins T, et al.
J Chem Phys
. 2014 Feb;
140(5):054306.
PMID: 24511939
Quantum beat spectroscopy has been used to measure rate coefficients at 300 K for collisional depolarization for NO(A (2)Σ(+)) and OH(A (2)Σ(+)) with krypton. Elastic depolarization rate coefficients have also...
9.
Brouard M, Chadwick H, Eyles C, Hornung B, Nichols B, Aoiz F, et al.
J Chem Phys
. 2013 Mar;
138(10):104310.
PMID: 23514492
Rotational angular momentum alignment effects in the rotationally inelastic collisions of NO(X) with Ar have been investigated at a collision energy of 66 meV by means of hexapole electric field...
10.
Brouard M, Chadwick H, Eyles C, Hornung B, Nichols B, Aoiz F, et al.
J Chem Phys
. 2013 Mar;
138(10):104309.
PMID: 23514491
Rotational angular momentum alignment effects in the rotational inelastic scattering of NO(X) with Ar have been investigated by means of close-coupled quantum mechanical, quasi-classical trajectory, and Monte Carlo hard shell...