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Probing the lowest coordination number of dianionic platinum–cyanide complexes in the gas phase: Dynamics of the charge dissociation process

Authors :
rgensen
Steen Bro
Thomas J. D. Jo
Preben Hvelplund
ndsted Nielsen
Gustav Bojesen
Source :
Bojesen, G, Hvelplund, P, Jørgensen, T J D & Nielsen, S B 2000, ' Probing the lowest coordination number of dianionic platinum-cyanide complexes in the gas phase: Dynamics of the charge dissociation process ', Journal of Chemical Physics, vol. 113, pp. 6608 ., Bojesen, G, Hvelplund, P, Jørgensen, T J D & Nielsen, SB 2000, ' Probing the lowest coordination number of dianionic platinum-cyanide complexes in the gas phase: Dynamics of the charge dissociation process ', Journal of Chemical Physics, vol. 113, no. 16, pp. 6608-6612 . https://doi.org/10.1063/1.1310610
Publication Year :
2000
Publisher :
AIP Publishing, 2000.

Abstract

Udgivelsesdato: OCT 22 2000 Low-energy and high-energy collision induced dissociation techniques are used to study the dissociation behavior of the gaseous Pt(CN)(6)(2-) and Pt(CN)(4)(2-) dianion complexes in order to probe the smallest stable dianion complex. Loss of neutral molecules from Pt(CN)(6)(2-) occurs resulting in Pt(CN)(5)(2-) and Pt(CN)(4)(2-), but no indication of the existence of Pt(CN)(3)(2-) was found. This indicates that the lifetime of Pt(CN)(3)(2-) is less than 4 mus (the flight time from the collision region to the detector). In contrast, all monoanion platinum-cyanide complexes were observed, i.e., Pt(CN)(n)(-) (n=1-6). The kinetic energy released in processes where monoanions are formed is much lower than the barrier height for the reverse reaction (>1.5 eV), which indicates that electron detachment is involved, e.g., Pt(CN)(3)(-) and CN- are not formed in the same dynamical process from Pt(CN)(4)(2-), or that the dynamics of the dissociation process is slow. For comparison, the Ru(bipy)(3)(2+)*--> [Ru(bipy)(2)-H](+)+bipyH(+) reaction is associated with a kinetic-energy release of similar to0.3 eV (bipy=2,2(')-bipyridine). (C) 2000 American Institute of Physics. [S0021-9606(00)00240-3].

Details

ISSN :
10897690 and 00219606
Volume :
113
Database :
OpenAIRE
Journal :
The Journal of Chemical Physics
Accession number :
edsair.doi.dedup.....6a9dd954305f47e846bac612c6105398
Full Text :
https://doi.org/10.1063/1.1310610