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Lester Andrews

Researcher at University of Virginia

Publications -  888
Citations -  25569

Lester Andrews is an academic researcher from University of Virginia. The author has contributed to research in topics: Infrared spectroscopy & Molecule. The author has an hindex of 68, co-authored 888 publications receiving 24613 citations. Previous affiliations of Lester Andrews include Ames Research Center & Environmental Molecular Sciences Laboratory.

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Infrared spectra of HC≡C-MH and M-η2-(C2H2) produced in reactions of laser-ablated group 5 transition-metal atoms with acetylene.

TL;DR: The ethynyl metal hydride and metallacycle complexes and M-η2-(C2H2) species all indicate strong bonding relative to the late-transition-metal and light-metal analogues, but they are somewhat weaker than the group 4 metal counterparts.
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A photoelectron spectroscopic study of the ground states of fluoromethyl (CH2F+) and fluoromethyl-d2 (CD2F+)

TL;DR: Etude de la reaction F+CH 3 par spectroscopie photoelectronique; attribution d'une nouvelle bande produite, au radical libre CH 2 F
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Absorption spectra of the phosphorus oxide (PO2 and PO3) radicals in solid argon

TL;DR: In this article, an observation of nouveaux systemes de bandes electroniques dans l'argon solide a 695 and 300 nm was performed, and the systeme dans le rouge was attribuee a PO 3 sur la base de comparaisons avec les especes isoelectroniques NO 3 and SO 3 + and de deplacements isotopiques.
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Infrared spectra and theoretical calculations of lithium hydride clusters in solid hydrogen, neon, and argon.

TL;DR: The simplest possible chemical reduction of dihydrogen using two lithium valence electrons to form the rhombic (LiH)(2) dimer is observed.
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Reactions of Laser-Ablated Osmium and Ruthenium Atoms with Nitrogen. Matrix Infrared Spectra and Density Functional Calculations of Osmium and Ruthenium Nitrides and Dinitrides

TL;DR: In this article, laser-ablated osmium and ruthenium atoms were reacted with nitrogen molecules; the products were isolated in solid argon and nitrogen and identified by infrared spectroscopy.