Hot and solid gallium clusters: too small to melt

A novel multicollision induced dissociation scheme is employed to determine the energy content for mass-selected gallium cluster ions as a function of their temperature. Measurements were performed for Ga(+)(n) (n=17 39, and 40) over a 90-720 K temperature range. For Ga+39 and Ga+40 a broad maximum...

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Veröffentlicht in:Physical review letters 2003-11, Vol.91 (21), p.215508-215508, Article 215508
Hauptverfasser: Breaux, Gary A, Benirschke, Robert C, Sugai, Toshiki, Kinnear, Brian S, Jarrold, Martin F
Format: Artikel
Sprache:eng
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Zusammenfassung:A novel multicollision induced dissociation scheme is employed to determine the energy content for mass-selected gallium cluster ions as a function of their temperature. Measurements were performed for Ga(+)(n) (n=17 39, and 40) over a 90-720 K temperature range. For Ga+39 and Ga+40 a broad maximum in the heat capacity-a signature of a melting transition for a small cluster-occurs at around 550 K. Thus small gallium clusters melt at substantially above the 302.9 K melting point of bulk gallium, in conflict with expectations that they will remain liquid to below 150 K. No melting transition is observed for Ga+17.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.91.215508