TY - JOUR
T1 - Ionization potentials of cobalt-sodium bimetallic clusters (Co nNam)
AU - Hoshino, Kuniyoshi
AU - Naganuma, Takashi
AU - Yamada, Yoshiyuki
AU - Watanabe, Katsura
AU - Nakajima, Atsushi
AU - Kaya, Koji
PY - 1992
Y1 - 1992
N2 - Cobalt-sodium bimetallic clusters (ConNam, n = 3-48) were produced by a two independent laser-vaporization method. Ionization potentials of the ConNam clusters were measured up to m = 3 using a tunable ultraviolet laser combined with a time-of-flight (TOF) mass spectrometer. In general, the ionization potentials decrease monotonically with the number of sodium atoms, and the ionization potentials of Co nNam+1 decrease by 0.2-0.8 eV compared to those of the corresponding ConNam cluster. However, the amount of IP decrement by the Na doping is relatively large at n ≤ 17 whereas it is small and constant at n ≥ 18. This feature can be explained by a geometric rearrangement; at small n, the Na doping induces a large geometric rearrangement of the cluster, but at large n, the geometric change is small. Reactivity of ConNam cluster toward H2 was also measured and the effect of the Na doping was studied. The reactivity also suggests the geometric change induced by the Na doping. Moreover, we examined the anticorrelation between IP and reactivity of the ConNam clusters, and no anticorrelation between them could be revealed.
AB - Cobalt-sodium bimetallic clusters (ConNam, n = 3-48) were produced by a two independent laser-vaporization method. Ionization potentials of the ConNam clusters were measured up to m = 3 using a tunable ultraviolet laser combined with a time-of-flight (TOF) mass spectrometer. In general, the ionization potentials decrease monotonically with the number of sodium atoms, and the ionization potentials of Co nNam+1 decrease by 0.2-0.8 eV compared to those of the corresponding ConNam cluster. However, the amount of IP decrement by the Na doping is relatively large at n ≤ 17 whereas it is small and constant at n ≥ 18. This feature can be explained by a geometric rearrangement; at small n, the Na doping induces a large geometric rearrangement of the cluster, but at large n, the geometric change is small. Reactivity of ConNam cluster toward H2 was also measured and the effect of the Na doping was studied. The reactivity also suggests the geometric change induced by the Na doping. Moreover, we examined the anticorrelation between IP and reactivity of the ConNam clusters, and no anticorrelation between them could be revealed.
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U2 - 10.1063/1.462961
DO - 10.1063/1.462961
M3 - Article
AN - SCOPUS:0000178310
SN - 0021-9606
VL - 97
SP - 3803
EP - 3807
JO - The Journal of Chemical Physics
JF - The Journal of Chemical Physics
IS - 5
ER -