Stability effects of AunXm+ (X=Cu, Al, Y, In) clusters
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F. Despa | R. Silverans | P. Lievens | S. Neukermans | F. Vanhoutte | W. Bouwen | H. Weidele | L. T. Kuhn | S. Bouckaert
[1] I. Billas,et al. Bonding character of bimetallic clusters AunXm(X=Al, In, Cs) , 1999 .
[2] R. Silverans,et al. Evidence for size-dependent electron delocalization in the ionization potentials of lithium monocarbide clusters , 1999 .
[3] Martins,et al. Stability of NanPb (n <~ 7) clusters: A first-principles molecular-dynamics study. , 1996, Physical review. B, Condensed matter.
[4] Konstantin M. Neyman,et al. On the electronic and geometric structure of bimetallic clusters : a comparison of the novel cluster Na6Pb to Na6Mg , 1995 .
[5] A. Nakajima,et al. Ionization energies of cobalt-vanadium bimetallic clusters (ConVm) , 1995 .
[6] U. Rothlisberger,et al. Na6Pb: a bimetallic cluster of striking stability , 1995 .
[7] Landman,et al. Electronic shell effects in triaxially deformed metal clusters: A systematic interpretation of experimental observations. , 1995, Physical review. B, Condensed matter.
[8] C. Yeretzian. Electronic structure effects in bimetallic MxN clusters : M = alkali, N = divalent metal , 1995 .
[9] A. Nakajima,et al. Ionization energies of aluminum-cesium bimetallic clusters (AlnCsm) , 1994 .
[10] Walt A. de Heer,et al. The physics of simple metal clusters: experimental aspects and simple models , 1993 .
[11] Matthias Brack,et al. The physics of simple metal clusters: self-consistent jellium model and semiclassical approaches , 1993 .
[12] Gong,et al. Enhanced stability of magic clusters: A case study of icosahedral Al12X, X=B, Al, Ga, C, Si, Ge, Ti, As. , 1993, Physical review letters.
[13] W. Andreoni,et al. Metal clusters with impurities: NanMg (n=6−9, 18) , 1992 .
[14] Jena,et al. Optical resonances in bimetallic clusters and their relation to the electronic structure. , 1992, Physical review. B, Condensed matter.
[15] H. Kudo. Observation of hypervalent CLi6 by Knudsen-effusion mass spectrometry , 1992, Nature.
[16] M. Knickelbein,et al. Bimetallic clusters of cobalt and aluminum: ionization potentials versus reactivity, and the importance of geometric structure , 1991 .
[17] Takashi Kishi,et al. Structure and reactivity of bimetallic cobalt-vanadium(ConVm+) cluster ions , 1990 .
[18] J. Alonso,et al. Stability and magic numbers of hetero-atomic clusters of simple metals , 1988 .
[19] Zhang,et al. Electronic shell structure of simple metal heteroclusters. , 1987, Physical review. B, Condensed matter.
[20] M. Kappes,et al. Are cluster abundances thermodynamic properties? Observation of lithium enrichment in LixNan−x, n≤42 , 1987 .
[21] T. Sakurai,et al. Mass distributions of negative cluster ions of copper, silver, and gold , 1986 .
[22] T. P. Martin,et al. Cluster Beam Chemistry—from Atoms to Solids , 1986 .
[23] M. Kappes,et al. Probes for electronic and geometrical shell structure effects in alkali-metal clusters. Photoionization measurements on KxLi, KxMg and KxZn(x < 25) , 1985 .
[24] Clemenger,et al. Ellipsoidal shell structure in free-electron metal clusters. , 1985, Physical review. B, Condensed matter.
[25] Winston A. Saunders,et al. Electronic Shell Structure and Abundances of Sodium Clusters , 1984 .
[26] J. Pople,et al. Effectively hypervalent molecules. 2. Lithium carbide (CLi5), lithium carbide (CLi6), and the related effectively hypervalent first row molecules, CLi5-nHn and CLi6-nHn , 1983 .