Probing the low-energy structures of aluminum-magnesium alloy clusters: a detailed study.
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[1] A. Alexandrova,et al. Persistent Covalency and Planarity in the BnAl6–n2– and LiBnAl6–n– (n = 0–6) Cluster Ions , 2011 .
[2] Yanming Ma,et al. An effective structure prediction method for layered materials based on 2D particle swarm optimization algorithm. , 2012, The Journal of chemical physics.
[3] Jaehoon Jung,et al. Does the "superatom" exist in halogenated aluminum clusters? , 2008, Journal of the American Chemical Society.
[4] S. Khanna,et al. Probing the magic numbers of aluminum-magnesium cluster anions and their reactivity toward oxygen. , 2013, Journal of the American Chemical Society.
[5] Wei Qin,et al. Appearance of bulk-like motifs in Si, Ge, and Al clusters. , 2010, Physical chemistry chemical physics : PCCP.
[6] A. Becke. Density-functional thermochemistry. III. The role of exact exchange , 1993 .
[7] P. Jena,et al. The viability of aluminum Zintl anion moieties within magnesium-aluminum clusters. , 2014, The Journal of chemical physics.
[8] H. Häkkinen,et al. Optical and electronic properties of graphene nanoribbons upon adsorption of ligand-protected aluminum clusters. , 2014, Physical chemistry chemical physics : PCCP.
[9] Dennis R. Salahub,et al. Molecular excitation energies to high-lying bound states from time-dependent density-functional response theory: Characterization and correction of the time-dependent local density approximation ionization threshold , 1998 .
[10] D. Marabello,et al. Experimental electron density analysis of Mn2(CO)10: metal-metal and metal-ligand bond characterization. , 2000, Inorganic chemistry.
[11] Lai‐Sheng Wang,et al. Probing the structures of gold-aluminum alloy clusters AuxAly(-): a joint experimental and theoretical study. , 2016, Nanoscale.
[12] P. Jena,et al. Aluminum Zintl anion moieties within sodium aluminum clusters. , 2014, The Journal of chemical physics.
[13] Yanchao Wang,et al. Crystal structure prediction via particle-swarm optimization , 2010 .
[14] Yanming Ma,et al. Reactions of xenon with iron and nickel are predicted in the Earth's inner core. , 2013, Nature chemistry.
[15] S. Khanna,et al. Formation of Al13I-: Evidence for the Superhalogen Character of Al13 , 2004, Science.
[16] Tian Lu,et al. Multiwfn: A multifunctional wavefunction analyzer , 2012, J. Comput. Chem..
[17] Lai‐Sheng Wang,et al. Observation of all-metal aromatic molecules. , 2001, Science.
[18] S. Khanna,et al. Crystal field effects on the reactivity of aluminum-copper cluster anions , 2010 .
[19] Yanming Ma,et al. B38: an all-boron fullerene analogue. , 2014, Nanoscale.
[20] Yanming Ma,et al. The metallization and superconductivity of dense hydrogen sulfide. , 2014, The Journal of chemical physics.
[21] Yanming Ma,et al. Perspective: crystal structure prediction at high pressures. , 2014, The Journal of chemical physics.
[22] Yanchao Wang,et al. Particle-swarm structure prediction on clusters. , 2012, The Journal of chemical physics.
[23] R. Valiev,et al. Atomic-scale analysis of the segregation and precipitation mechanisms in a severely deformed Al–Mg alloy , 2014 .
[24] S. Khanna,et al. Al Cluster Superatoms as Halogens in Polyhalides and as Alkaline Earths in Iodide Salts , 2005, Science.
[25] R. Bader. Atoms in molecules : a quantum theory , 1990 .
[26] S. Khanna,et al. Nature of valence transition and spin moment in Ag(n)V(+) clusters. , 2014, Journal of the American Chemical Society.
[27] Yanming Ma,et al. Self-assembled ultrathin nanotubes on diamond (100) surface , 2014, Nature Communications.
[28] Alexander I Boldyrev,et al. Developing paradigms of chemical bonding: adaptive natural density partitioning. , 2008, Physical chemistry chemical physics : PCCP.
[29] F. Naumkin,et al. A computational study of 'Al-kanes' and 'Al-kenes'. , 2014, Physical chemistry chemical physics : PCCP.
[30] Hongbin Wu,et al. S-P HYBRIDIZATION AND ELECTRON SHELL STRUCTURES IN ALUMINUM CLUSTERS : A PHOTOELECTRON SPECTROSCOPY STUDY , 1998 .
[31] M. Mundt,et al. Photoelectron spectra of anionic sodium clusters from time-dependent density-functional theory in real time , 2007, 0708.2017.
[32] Alexander I Boldyrev,et al. All-Metal Antiaromatic Molecule: Rectangular Al44- in the Li3Al4- Anion , 2003, Science.
[33] William Tiznado,et al. Theoretical design of stable small aluminium-magnesium binary clusters. , 2013, Physical chemistry chemical physics : PCCP.
[34] A. Halder,et al. A novel feature in aluminum cluster photoionization spectra and possibility of electron pairing at T ≳ 100 K. , 2014, Nano letters.
[35] Wang,et al. Accurate and simple analytic representation of the electron-gas correlation energy. , 1992, Physical review. B, Condensed matter.
[36] Q. Luo,et al. On the Potential of Using the Al7 Superatom as an Excess Electron Acceptor To Construct Materials with Excellent Nonlinear Optical Properties. , 2016, Inorganic chemistry.
[37] P. Jena,et al. Electronic structure and properties of isoelectronic magic clusters: Al13X (X=H,Au,Li,Na,K,Rb,Cs). , 2010, The Journal of chemical physics.
[38] T. Baruah,et al. Al12Cu Superatom as Stable Building Block of Ionic Salts , 2015 .
[39] Li Zhu,et al. CALYPSO: A method for crystal structure prediction , 2012, Comput. Phys. Commun..
[40] Weiming Sun,et al. Quasi-Chalcogen Characteristics of Al12Be: A New Member of the Three-Dimensional Periodic Table , 2016 .
[41] R. C. Picu,et al. Atomistic study of pipe diffusion in Al–Mg alloys , 2004 .