Jordan C. Smith
Pennsylvania State University
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Featured researches published by Jordan C. Smith.
Journal of the American Chemical Society | 2012
Zhixun Luo; Gabriel U. Gamboa; Jordan C. Smith; Arthur C. Reber; J. Ulises Reveles; Shiv N. Khanna; A. W. Castleman
Spin accommodation is demonstrated to play a determining role in the reactivity of silver cluster anions with oxygen. Odd-electron silver clusters are found to be especially reactive, while the anionic 13-atom cluster exhibits unexpected stability against reactivity with oxygen. Theoretical studies show that the odd-even selective behavior is correlated with the excitation needed to activate the O-O bond in O(2). Furthermore, by comparison with the reactivity of proximate even-electron clusters, we demonstrate that the inactivity of Ag(13)(-) is associated with its large spin excitation energy, ascribed to a crystal-field-like splitting of the orbitals caused by the bilayer atomic structure, which induces a large gap despite not having a magic number of valence electrons.
Journal of Physical Chemistry A | 2014
Jordan C. Smith; Arthur C. Reber; Shiv N. Khanna; A. W. Castleman
We have studied the size-selective reactivity of AlnBm(-) clusters m = 1,2 with O2 to investigate the effect of congener substitution in energetic aluminum clusters. Mixed-metal clusters offer an additional strategy for tuning the electronic and geometric structure of clusters and by substituting an atom with a congener; we may investigate the effect of structural changes in clusters with similar electronic structures. Using a fast-flow tube mass spectrometer, we formed aluminum boride cluster anions and exposed them to molecular oxygen. We found multiple stable species with Al12B(-) and Al11B2(-) being highly resistant to reactivity with oxygen. These clusters behave in a similar manner as Al13(-), which has previously been found to be stable in oxygen because of its icosahedral geometry and its filled electronic shell. Al13(-) and Al12B(-) have icosahedral structures, while Al11B2(-) forms a distorted icosahedron. All three of these clusters have filled electronic shells, and Al12B(-) has a larger HOMO-LUMO gap due to its compact geometry. Other cluster sizes are investigated, and the structures of the AlnB(-) series are found to have endohedrally doped B atoms, as do many of the AlnB2(-) clusters. The primary etching products are found to be a loss of two Al2O molecules, with boron likely to remain in the cluster.
Journal of Physical Chemistry A | 2012
Zhixun Luo; Jordan C. Smith; W. Hunter Woodward; A. W. Castleman
We investigated the halogenation reactivity of copper cluster anions produced via a magnetron-sputter source after introduction into a fast-flow tube reaction apparatus simultaneously with chlorine gas. Interesting cluster products corresponding to [Cu(n)Cl(n+1)](-) (n = 1-6) were observed with notable stability, and the mass distribution of these clusters exhibits an exponential decay with increasing values of n. Reaction kinetics analysis is provided on the gas-phase reactivity of copper cluster anions with chlorine. First-principle calculations suggest a series of cubic-like structures for these species similar to the structure of alkali halide clusters due to their similar electronic configurations. These structures act as a starting point in the formation of ionic crystals.
Journal of Physical Chemistry C | 2013
W. Hunter Woodward; Arthur C. Reber; Jordan C. Smith; Shiv N. Khanna; A. W. Castleman
International Journal of Mass Spectrometry | 2012
Zhixun Luo; W. Hunter Woodward; Jordan C. Smith; A. W. Castleman
Journal of Physical Chemistry C | 2011
W. Hunter Woodward; Nicole Eyet; Nicholas S. Shuman; Jordan C. Smith; Albert A. Viggiano; A. W. Castleman
Chemical Physics | 2013
Zhixun Luo; Jordan C. Smith; Trevor M. Goff; James H. Adair; A. W. Castleman
Chemical Physics Letters | 2013
Zhixun Luo; Jordan C. Smith; Cuneyt Berkdemir; A. W. Castleman
Chemical Physics Letters | 2013
Zhixun Luo; Cuneyt Berkdemir; Jordan C. Smith; A. W. Castleman
Bulletin of the American Physical Society | 2018
David J Fink; Jordan C. Smith; Saeed Hamzeloui; Edmund G. Myers