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Journal ArticleDOI

Growth, magic behavior, and electronic and vibrational properties of Cr-doped Si clusters

TLDR
In this article, the most stable structures and magic clusters have been determined for silicon clusters doped with a Cr atom starting from many initial configurations, and the results of Raman activities and infrared intensities are presented for selected clusters.
Abstract
Silicon clusters doped with a Cr atom have been studied using ab initio plane-wave ultrasoft pseudopotential and Gaussian methods. The most stable structures and magic clusters have been determined for ${\mathrm{Si}}_{n\mathrm{Cr}}$ $(n=8--17)$ starting from many initial configurations. Our results show that for $n=8--11$ the number of Si atoms is not enough to surround a Cr atom fully and therefore the structures of these clusters are basket type in which the Cr atom has a bare part. A cage structure is formed for $n=12$. $\mathrm{Cr}@{\mathrm{Si}}_{12}$ and $\mathrm{Cr}@{\mathrm{Si}}_{15}$ show magic behavior. Among the charged clusters, anion of $\mathrm{Cr}@{\mathrm{Si}}_{12}$ and cation of $\mathrm{Cr}@{\mathrm{Si}}_{13}$ have high stability. The ionization potentials and electron affinities have been calculated. The dynamical stability of clusters is studied from vibrational calculations. The results of Raman activities and infrared intensities are presented for selected clusters. These can be used to identify the structures from experiments. The bonding nature in $\mathrm{Cr}@{\mathrm{Si}}_{n}$ clusters is found to change depending on the structure even when the cluster size is the same.

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Journal ArticleDOI

Endohedrally Doped Cage Clusters

TL;DR: This comprehensive review presents results of many such developments in this fast-growing field including endohedrally doped Al, Ga, and In clusters, and performs ab initio calculations to present updated results of the most stable atomic structures and fundamental electronic properties of the endohedral doped cage clusters.
Journal ArticleDOI

Density-functional investigation of metal-silicon cage clusters M Si n ( M = Sc , Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn; n = 8 – 16 )

TL;DR: The geometries, stabilities, electronic, and magnetic properties of the transition metal encapsulated by density functional theory with generalized gradient approximation have been systematically investigated by using density functional theories as mentioned in this paper, and it is shown that every transition metal atom (TMA) will fall into the center of Si outer frame and form a metal-encapsulated Si cage at a certain size.
Journal ArticleDOI

Density Functional Investigation of Structure and Stability of Gen and GenNi (n = 1−20) Clusters: Validity of the Electron Counting Rule

TL;DR: It is found that in clusters containing more than 8 Ge atoms the Ni atom is absorbed endohedrally in the Ge cage, and there is a sharp drop in IP as the valence electron count increases from 20 to 21, in agreement with predictions of shell models.
Journal ArticleDOI

Mass spectrometric stability study of binary MSn clusters (S = Si, Ge, Sn, Pb, and M = Cr, Mn, Cu, Zn)

TL;DR: In this article, a mass spectrometric stability investigation of a series of metal doped group IVA (semi-) metal clusters is presented, where the resulting abundance spectra reveal host and dopant dependent stability information for the different systems investigated.
References
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Journal ArticleDOI

Density‐functional thermochemistry. III. The role of exact exchange

TL;DR: In this article, a semi-empirical exchange correlation functional with local spin density, gradient, and exact exchange terms was proposed. But this functional performed significantly better than previous functionals with gradient corrections only, and fits experimental atomization energies with an impressively small average absolute deviation of 2.4 kcal/mol.
Journal ArticleDOI

Soft self-consistent pseudopotentials in a generalized eigenvalue formalism.

TL;DR: Novel features are that the pseudopotential itself becomes charge-state dependent, the usual norm-conservation constraint does not apply, and a generalized eigenproblem is introduced.
Journal ArticleDOI

Ab initio molecular dynamics for open-shell transition metals.

Georg Kresse, +1 more
- 01 Nov 1993 - 
TL;DR: In this paper, it was shown that quantum-mechanical molecular-dynamics simulations in a finite-temperature local density approximation based on the calculation of the electronic ground state and of the Hellmann-Feynman forces after each time step are feasible for liquid noble and transition metals.
Journal ArticleDOI

Formation of Metal-Encapsulating Si Cage Clusters

TL;DR: Mass analyses reveal that many types of transition metal ions M(+) react with silane to form dehydrogenated MSi( +)(n) cluster ions as an end product, indicating that the metal atom is endohedral and stabilizes the Si polyhedral cage.
Journal ArticleDOI

Metal-Encapsulated Fullerenelike and Cubic Caged Clusters of Silicon

TL;DR: Metal-encapsulated caged clusters of silicon from ab initio pseudopotential plane wave calculations using generalized gradient approximation for the exchange-correlation energy are reported, making them attractive for cluster-assembled materials.
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