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Antimony clusters

V. Sundararajan and V. Kumar, Ab initio molecular dynamics study of antimony clusters, J. Chem. Phys. 102,9631-9637 1995. [Pg.228]

Fig. 1.9. Energetic impact of antimony clusters onto a graphite target, (a) 2,480 x 2,480 STM image of an HOPG substrate after deposition of Sb4+ clusters with 230 eV kinetic energy at room temperature. Stable nanodot (hillock) formation is observed, (b) 47 x 47 STM image of the impact location of an Sb4+ cluster with 150 eV collision energy, (c) 71 X 71A STM image of the impact of an Sbs cluster with 410 eV collision energy [58,87,90]... Fig. 1.9. Energetic impact of antimony clusters onto a graphite target, (a) 2,480 x 2,480 STM image of an HOPG substrate after deposition of Sb4+ clusters with 230 eV kinetic energy at room temperature. Stable nanodot (hillock) formation is observed, (b) 47 x 47 STM image of the impact location of an Sb4+ cluster with 150 eV collision energy, (c) 71 X 71A STM image of the impact of an Sbs cluster with 410 eV collision energy [58,87,90]...
Antimony clusters/complexes Table 25.4 BDEs in Antimony Clusters/Complexes ... [Pg.1239]

Antimony cluster/complexes anions, 1240 cations, 1240 neutrals, 1239 Aromatic compounds ArH C-C bonds... [Pg.1622]

Heyde, M., Cappella, B., Sturm, H., Ritter, C., and Rademann, K. (2001). Dislocation of antimony clusters on graphite by means of dynamic plowing nanolithography, Surf. Sci. 476, 54—62. [Pg.150]

Bardotti, L., Jensen, R, Hoareau, A., TreUleux, M., and Cabaud B. (1995). Experimental observation of fast diffusion of large antimony clusters on graphite surfaces, Phys. Rev. Lett. 74, 4694-4697. [Pg.152]


See other pages where Antimony clusters is mentioned: [Pg.23]    [Pg.182]    [Pg.205]    [Pg.210]    [Pg.234]    [Pg.36]    [Pg.489]    [Pg.234]    [Pg.69]    [Pg.370]    [Pg.700]    [Pg.128]    [Pg.46]    [Pg.168]    [Pg.741]    [Pg.741]    [Pg.224]   
See also in sourсe #XX -- [ Pg.36 ]




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