An investigation of pulsed-laser-ablated Zn, Cd and Hg metal atom reactions with HCN under excess argon during co-deposition with laser-ablated Hg atoms from a dental amalgam target also provided Hg emissions capable of photoionization of the CN photo-dissociation product. A new band at 1933.4 cm−1 in the region of the CN and CN+ gas-phase fundamental absorptions that appeared upon annealing the matrix to 20 K after sample deposition, and disappeared upon UV photolysis is assigned to (Ar)nCN+, our key finding. It is not possible to determine the n coefficient exactly, but structure calculations suggest that one, two, three or four argon atoms can solvate the CN+ cation in an argon matrix with C−N absorptions calculated (B3LYP) to be between...
Copyright (1998) American Institute of Physics. This article may be downloaded for personal use only...
The generation of metal cyanide ions in the gas phase by laser ablation of M(CN)(2) (M = Co, Ni, Zn,...
Author Institution: Department of Chemistry, University of VirginiaLaser ablated transition metal at...
Zinc and cadmium atoms from laser ablation of the metals and mercury atoms ablated from a dental ama...
Laser-ablated group 2 metal atoms exhibit different reactivities with (CN)2 in excess argon and neon...
Mass- and time-integrated optical emission spectra were recorded during direct XeCl laser ablation ...
Reactions of laser-ablated U atoms with N<sub>2</sub> molecules upon codeposition in excess argon or...
We identify new noble-gas compounds in solid matrices using IR spectroscopy. The compounds under stu...
*S Supporting Information ABSTRACT: Reactions of laser-ablated U atoms with N2 molecules upon code-p...
1Supported in part by the U. S. Army Research Office.Author Institution: Molecular Spectroscopy Divi...
Au+(CO)n complexes are produced in the gas phase via pulsed laser vaporization, expanded in a supers...
Laser-ablated U atoms react with (CN)<sub>2</sub> in excess argon and neon during codeposition at 4 ...
Contains fulltext : 236365.pdf (Publisher’s version ) (Open Access
Research is supported by the Chemistry Division of the National Science Foundation.Author Institutio...
Author Institution: Molecular Physics Division, National Institute, of Standards and Technology 2089...
Copyright (1998) American Institute of Physics. This article may be downloaded for personal use only...
The generation of metal cyanide ions in the gas phase by laser ablation of M(CN)(2) (M = Co, Ni, Zn,...
Author Institution: Department of Chemistry, University of VirginiaLaser ablated transition metal at...
Zinc and cadmium atoms from laser ablation of the metals and mercury atoms ablated from a dental ama...
Laser-ablated group 2 metal atoms exhibit different reactivities with (CN)2 in excess argon and neon...
Mass- and time-integrated optical emission spectra were recorded during direct XeCl laser ablation ...
Reactions of laser-ablated U atoms with N<sub>2</sub> molecules upon codeposition in excess argon or...
We identify new noble-gas compounds in solid matrices using IR spectroscopy. The compounds under stu...
*S Supporting Information ABSTRACT: Reactions of laser-ablated U atoms with N2 molecules upon code-p...
1Supported in part by the U. S. Army Research Office.Author Institution: Molecular Spectroscopy Divi...
Au+(CO)n complexes are produced in the gas phase via pulsed laser vaporization, expanded in a supers...
Laser-ablated U atoms react with (CN)<sub>2</sub> in excess argon and neon during codeposition at 4 ...
Contains fulltext : 236365.pdf (Publisher’s version ) (Open Access
Research is supported by the Chemistry Division of the National Science Foundation.Author Institutio...
Author Institution: Molecular Physics Division, National Institute, of Standards and Technology 2089...
Copyright (1998) American Institute of Physics. This article may be downloaded for personal use only...
The generation of metal cyanide ions in the gas phase by laser ablation of M(CN)(2) (M = Co, Ni, Zn,...
Author Institution: Department of Chemistry, University of VirginiaLaser ablated transition metal at...