TY - JOUR
T1 - Compact non-rock-salt structures in sodium fluoride cluster ions at specific sizes revealed by ion mobility mass spectrometry
AU - Ohshimo, Keijiro
AU - Takahashi, Tohru
AU - Moriyama, Ryoichi
AU - Misaizu, Fuminori
N1 - Publisher Copyright:
© 2014 American Chemical Society.
PY - 2014/10/30
Y1 - 2014/10/30
N2 - Structures of small sodium fluoride cluster cations, NanFn-1+, have been determined for n = 5-23 by ion mobility mass spectrometry. In the mass spectrum of NanFn-1+ cluster ions measured after collisions in the ion-drift cell, cuboid ions with near-regular hexahedron such as n = 14 (3 × 3 × 3), 23 (3 × 3 × 5), 38 (3 × 5 × 5), 63 (5 × 5 × 5), and 88 (5 × 5 × 7) were predominantly observed as magic numbers. By comparison of the collision cross sections obtained from the ion mobility measurements with theoretical ones, we have experimentally shown that the ions of n = 7 and 10 have stable non-rock-salt type structures in which one sodium atom is encapsulated into the sodium fluoride cuboid lattice. The collision cross sections of n = 12 and 13 are almost equal to that of the n = 14 cuboid. A similar feature was also observed in collision cross sections of n = 21 and 22, which are equal to that of the n = 23 cuboid. These features indicate that the cluster ions of n = 12, 13, 21, and 22 have near-cuboid structures with some surface defects.
AB - Structures of small sodium fluoride cluster cations, NanFn-1+, have been determined for n = 5-23 by ion mobility mass spectrometry. In the mass spectrum of NanFn-1+ cluster ions measured after collisions in the ion-drift cell, cuboid ions with near-regular hexahedron such as n = 14 (3 × 3 × 3), 23 (3 × 3 × 5), 38 (3 × 5 × 5), 63 (5 × 5 × 5), and 88 (5 × 5 × 7) were predominantly observed as magic numbers. By comparison of the collision cross sections obtained from the ion mobility measurements with theoretical ones, we have experimentally shown that the ions of n = 7 and 10 have stable non-rock-salt type structures in which one sodium atom is encapsulated into the sodium fluoride cuboid lattice. The collision cross sections of n = 12 and 13 are almost equal to that of the n = 14 cuboid. A similar feature was also observed in collision cross sections of n = 21 and 22, which are equal to that of the n = 23 cuboid. These features indicate that the cluster ions of n = 12, 13, 21, and 22 have near-cuboid structures with some surface defects.
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U2 - 10.1021/jp5061396
DO - 10.1021/jp5061396
M3 - Article
AN - SCOPUS:84908569416
SN - 1089-5639
VL - 118
SP - 9970
EP - 9975
JO - Journal of Physical Chemistry A
JF - Journal of Physical Chemistry A
IS - 43
ER -