Abstract

Singly and multiply charged clusters of the elements Ag, Au, Bi, and Pb---prepared by the gas-aggregation technique and ionized by electron impact---are detected by a single-focusing magnetic mass spectrometer. Stable doubly and triply charged clusters ${X}_{n}^{m+}$ (m=2,3) are observed for values of n which are well below both of the previously reported ones and the theoretical values predicted in the open literature. The various critical values we obtain are as follows: ${\mathrm{Pb}}_{\mathrm{n}}^{2+}$ (${n}_{c}$=3); ${\mathrm{Bi}}_{\mathrm{n}}^{2+}$ (${n}_{c}$=5); ${\mathrm{Ag}}_{\mathrm{n}}^{2+}$, ${\mathrm{Au}}_{\mathrm{n}}^{2+}$ (${n}_{c}$=9), and ${\mathrm{Au}}_{\mathrm{n}}^{3+}$ (${n}_{c}$=22); ${\mathrm{Ag}}_{\mathrm{n}}^{3+}$ (${n}_{c}$=22); ${\mathrm{Bi}}_{\mathrm{n}}^{3+}$ (${n}_{c}$=38); ${\mathrm{Pb}}_{\mathrm{n}}^{3+}$ (${n}_{c}$=43). A strong dependence of the obtained values on the experimental formation conditions of the neutral clusters is observed.

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