Paul D Lane
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Explore the profile of Paul D Lane including associated specialties, affiliations and a list of published articles.
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Articles
22
Citations
63
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Recent Articles
1.
Garrow M, Bertram L, Winter A, Prentice A, Crane S, Lane P, et al.
Commun Chem
. 2025 Jan;
8(1):7.
PMID: 39789245
Various photoactive molecules contain motifs built on aza-aromatic heterocycles, although a detailed understanding of the excited state photophysics and photochemistry in such systems is not fully developed. To help address...
2.
Alexandrowicz G, Babikov D, Brouard M, Butler A, Chadwick H, Chandler D, et al.
Faraday Discuss
. 2024 Aug;
251(0):171-204.
PMID: 39136532
No abstract available.
3.
Auerbach D, Babikov D, Butler A, Chandler D, Fingerhut J, Guo H, et al.
Faraday Discuss
. 2024 Aug;
251(0):471-508.
PMID: 39133118
No abstract available.
4.
Elstone N, Shaw E, Shimizu K, Lai J, Deme B, Lane P, et al.
Faraday Discuss
. 2024 Aug;
253(0):55-78.
PMID: 39091139
As part of an ongoing study of the structure and properties of mixtures of ionic liquids in which one component has a hydrocarbon chain and the other a semiperfluorocarbon chain,...
5.
Roman M, Knight A, Moon D, Lane P, Costen M, McKendrick K
J Phys Chem A
. 2024 Jun;
128(26):5166-5174.
PMID: 38915192
Angular distributions of OH inelastically scattered from the surfaces of the reactive hydrocarbon liquids squalane (fully saturated) and squalene (partially unsaturated) have been measured. A pulsed, rotationally cold molecular beam...
6.
Elstone N, Shimizu K, Shaw E, Lane P, DAndrea L, Deme B, et al.
J Phys Chem B
. 2023 Aug;
127(33):7394-7407.
PMID: 37555779
By mixing ionic liquids (ILs), it is possible to fine-tune their bulk and interfacial structure. This alters their physical properties and solvation behavior and is a simple way to prepare...
7.
Crane S, Garrow M, Lane P, Robertson K, Waugh A, Woolley J, et al.
J Phys Chem A
. 2023 Jul;
127(31):6425-6436.
PMID: 37494478
Excess energy redistribution dynamics operating in nitrobenzene under hexane and isopropanol solvation were investigated using ultrafast transient absorption spectroscopy (TAS) with a 267 nm pump and a 340-750 nm white...
8.
Knight A, Olivares C, Roman M, Moon D, Lane P, Costen M, et al.
J Chem Phys
. 2023 Jun;
158(24).
PMID: 37382234
We have analyzed the effects of the spreads in experimental parameters on the reliability of speeds and angular distributions extracted from a generic surface-scattering experiment based on planar laser-induced fluorescence...
9.
Roman M, Knight A, Moon D, Lane P, Greaves S, Costen M, et al.
J Chem Phys
. 2023 Jun;
158(24).
PMID: 37382233
Inelastic collisions of OH with an inert liquid perfluoropolyether (PFPE) surface have been studied experimentally. A pulsed molecular beam of OH with a kinetic energy distribution peaking at 35 kJ...
10.
Lane P, Gstir T, Purcell S, Swierczewski M, Elstone N, Bruce D, et al.
J Phys Chem A
. 2023 Jun;
127(26):5580-5590.
PMID: 37352233
We demonstrate a proof-of-concept of a new analytical technique to measure relative F atom exposure at the surfaces of fluorinated materials. The method is based on reactive-atom scattering (RAS) of...