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Corrosion performance of Zn–Mg–Al coated steel in accelerated corrosion tests used in the automotive industry and field exposures

N. LeBozec、Dominique Thierry、Ari Peltola 等 7 位作者2013-03-11Materials and Corrosion

Abstract The corrosion performance of Zn–Mg(1–2%)–Al(1–2%) (ZMA) coatings has been compared to zinc–iron alloy (galvannealed, GA) and zinc–aluminum coating (Zn–5Al, Galfan) as well as to conventional zinc coatings produced by hot‐dip galvanization (HDG) and electrogalvanization (EG). For this purpose, cosmetic samples…

Concrete Corrosion and DurabilityHydrogen embrittlement and corrosion behaviors in metalsCorrosion Behavior and Inhibition

Relationship of thermal boundary conductance to structure from an analytical model plus molecular dynamics simulations

Xiaowang Zhou、Reese E. Jones、C. J. Kimmer 等 5 位作者2013-03-11Physical Review B

Thermal boundary resistance dominates the overall resistance of nanosystems. This effect can be utilized to improve the figure of merit of thermoelectric materials. It is also a concern for thermal failures in microelectronic devices. The interfacial resistance depends sensitively on many interrelated structural detai…

nanoparticles nucleation surface interactionsThermal properties of materialsAdhesion, Friction, and Surface Interactions

Theory of strong-field injection and control of photocurrent in dielectrics and wide bandgap semiconductors

Stanislav Yu. Kruchinin、Michael Korbman、Vladislav S. Yakovlev2013-03-11arXiv

We propose a theory of optically-induced currents in dielectrics and wide-gap semiconductors exposed to a non-resonant ultrashort laser pulse with a stabilized carrier-envelope phase. In order to describe strong-field electron dynamics, equations for density matrix have been solved self-consistently with equations for…

Materials Sciencephysics.opticsquant-ph

Excitation of coherent phonons in the one-dimensional Bi(114) surface

D. Leuenberger、H. Yanagisawa、S. Roth 等 8 位作者2013-03-11arXiv

We present time-resolved photoemission experiments from a peculiar bismuth surface, Bi(114). The strong one-dimensional character of this surface is reflected in the Fermi surface, which consists of spin-polarized straight lines. Our results show that the depletion of the surface state and the population of the bulk c…

Materials ScienceStrongly Correlated Electrons

Antiferromagnetic ordering of dangling-bond electrons at the stepped Si(001) surface

Junho Lee、Sun-Woo Kim、Jun‐Hyung Cho2013-03-11The Journal of Chemical Physics

Using first-principles density-functional calculations, we explore the possibility of magnetic order at the rebonded DB step of the Si(001) surface. The rebonded DB step containing threefold coordinated Si atoms can be treated as a one-dimensional dangling-bond (DB) wire along the step edge. We find that Si atoms comp…

ZnO doping and propertiesElectronic and Structural Properties of OxidesPhysics of Superconductivity and Magnetism

Measurement of the thermal expansion coefficient of an Al-Mg alloy at ultra-low temperatures

Massimo Bassan、Bruno Buonomo、Giorgio Cavallari 等 15 位作者2013-03-11arXiv

We describe a result coming from an experiment based on an Al-Mg alloy (~ 5% Mg) suspended bar hit by an electron beam and operated above and below the termperature of transition from superconducting to normal state of the material. The amplitude of the bar first longitudinal mode of oscillation, excited by the beam i…

astro-ph.IMMaterials ScienceSuperconductivity

Observation of a Burstein–Moss Shift in Rhenium-Doped MoS 2 Nanoparticles

Qi Sun、Lena Yadgarov、Rita Rosentsveig 等 6 位作者2013-03-11ACS Nano

We investigated the optical properties of rhenium-doped MoS2 nanoparticles and compared our findings with the pristine and bulk analogues. Our measurements reveal that confinement softens the exciton positions and reduces spin-orbit coupling, whereas doping has the opposite effect. We model the carrier-induced exciton…

2D Materials and ApplicationsChalcogenide Semiconductor Thin FilmsPerovskite Materials and Applications

Synthesis and Characterization of the in Situ Bulk Polymerization of PMMA Containing Graphene Sheets Using Microwave Irradiation

Mohammad Aldosari、Ali Othman、Edreese Alsharaeh2013-03-11Molecules

Polymethylmethacrylate-graphene (PMMA/RGO) nanocomposites were prepared via in situ bulk polymerization using two different preparation techniques. In the first approach, a mixture of graphite oxide (GO) and methylmethacrylate monomers (MMA) were polymerized using a bulk polymerization method with a free radical initi…

biodegradable polymer synthesis and propertiesGraphene research and applicationsPolymer Nanocomposites and Properties

Electronic and Transport Properties of Unbalanced Sublattice N-Doping in Graphene

Aurélien Lherbier、Andrés R. Botello‐Méndez、Jean‐Christophe Charlier2013-03-11Nano Letters

Using both first-principles techniques and a real-space Kubo-Greenwood approach, electronic and transport properties of nitrogen-doped graphene with a single sublattice preference are investigated. Such a breaking of the sublattice symmetry leads to the appearance of a true band gap in graphene electronic spectrum eve…

Quantum and electron transport phenomenaGraphene research and applications2D Materials and Applications

Steroid-based facial amphiphiles for stabilization and crystallization of membrane proteins

Sung Chang Lee、B. Bennett、Wen‐Xu Hong 等 13 位作者2013-03-11Proceedings of the National Academy of Sciences

Amphiphile selection is a critical step for structural studies of membrane proteins (MPs). We have developed a family of steroid-based facial amphiphiles (FAs) that are structurally distinct from conventional detergents and previously developed FAs. The unique FAs stabilize MPs and form relatively small protein-deterg…

Chemical Synthesis and AnalysisSupramolecular Self-Assembly in MaterialsLipid Membrane Structure and Behavior

Hole doped Dirac states in silicene by biaxial tensile strain

T. P. Kaloni、Y. C. Cheng、U. Schwingenschlögl2013-03-11Journal of Applied Physics

The effects of biaxial tensile strain on the structure, electronic states, and mechanical properties of silicene are studied by ab-initio calculations. Our results show that up to 5% strain the Dirac cone remains essentially at the Fermi level, while higher strain induces hole doped Dirac states because of weakened Si…

Boron and Carbon Nanomaterials ResearchTopological Materials and PhenomenaGraphene research and applications

Magnetic control of spin-orbit fields: a first-principles study of Fe/GaAs junctions

Martin Gmitra、Alex Matos-Abiague、Claudia Draxl 等 4 位作者2013-03-11arXiv

The microscopic structure of spin-orbit fields for the technologically important Fe/GaAs interface is uncovered from first principles. A symmetry based method allows to obtain the spin-orbit fields---both their magnitude and orientation---for a generic Bloch state, from the electronic band structure for any in-plane m…

Mesoscale and Nanoscale PhysicsMaterials Science

Nanobatteries in redox-based resistive switches require extension of memristor theory

Ilia Valov、Eike Linn、Stefan Tappertzhofen 等 7 位作者2013-03-11arXiv

Redox-based nanoionic resistive memory cells (ReRAMs) are one of the most promising emerging nano-devices for future information technology with applications for memory, logic and neuromorphic computing. Recently, the serendipitous discovery of the link between ReRAMs and memristors and memristive devices has further…

Materials Science

Spiraling eutectic dendrites

Tamás Pusztai、László Rátkai、Attila Szállás 等 4 位作者2013-03-11Physical Review E

Eutectic dendrites forming in a model ternary system have been studied using the phase-field theory. The eutectic and one-phase dendrites have similar forms, and the tip radius scales with the interface free energy as for one-phase dendrites. The steady-state eutectic patterns, appearing on these two-phase dendrites,…

Nonlinear Dynamics and Pattern FormationSolidification and crystal growth phenomenaTheoretical and Computational Physics

Nucleation and growth of thin films of rod-like conjugated molecules

Gregor Hlawacek、Christian Teichert2013-03-11Journal of Physics Condensed Matter

Thin films formed from small molecules are rapidly gaining importance in different technological fields. To explain their growth, methods developed for zero-dimensional atoms as the film-forming particles are applied. However, in organic thin-film growth the dimensionality of the building blocks comes into play. Using…

ZnO doping and propertiesMolecular Junctions and NanostructuresQuantum Dots Synthesis And Properties

Insulator-to-metal transition of SrTiO3:Nb single crystal surfaces induced by Ar+ bombardment

Christian Rodenbücher、Sebastian Wicklein、Rainer Waser 等 4 位作者2013-03-11Applied Physics Letters

In this paper, the effect of Ar+ bombardment of SrTiO3:Nb surface layers is investigated on the macro- and nanoscale using surface-sensitive methods. After bombardment, the stoichiometry and electronic structure are changed distinctly leading to an insulator-to-metal transition related to the change of the Ti “d” elec…

Advanced Memory and Neural ComputingSemiconductor materials and devicesElectronic and Structural Properties of Oxides

Structure, magnetism, and magnetic compensation behavior of Co50-xMn25Ga25+x and Co50-xMn25+xGa25 Heusler alloys

G. J. Li、E. K. Liu、Y. J. Zhang 等 7 位作者2013-03-11Journal of Applied Physics

The structure, magnetism, magnetic compensation behavior, exchange interaction, and electronic structures of Co50-xMn25Ga25+x and Co50-xMn25+xGa25 (x = 0–25) alloys have been systematically investigated by both experiments and first-principles calculations. We found that all the samples exhibited body centered cubic s…

Heusler alloys: electronic and magnetic propertiesMagnetic properties of thin filmsShape Memory Alloy Transformations

Thermal activation at moderate-to-high and high damping: finite barrier effects and force spectroscopy

J. J. Mazo、O. Y. Fajardo、D. Zueco2013-03-11arXiv

We study the thermal escape problem in the moderate-to-high and high damping regime of a system with a parabolic barrier. We present a formula that matches our numerical results accounting for finite barrier effects, and compare it with previous works. We also show results for the full damping range. We quantitatively…

physics.bio-phMaterials Sciencecond-mat.stat-mech

An innovative approach of structural instabilities in tetragonal tungsten bronze crystals through the concept of rigid unit modes

Mikhail Smirnov、Pierre Saint-Grégoire2013-03-11arXiv

Tetragonal tungsten bronze (TTB) oxides are one of the most important classes of ferroelectrics. Many of these framework structures undergo ferroelastic transformations related to octahedron tilting deformations. Such tilting deformations are closely related to the Rigid Unit Modes (RUMs). This paper discusses the who…

Materials Science

Grazing incidence fast atom diffraction for He atoms impinging on a Ag(110) surface

C. A. Ríos Rubiano、G. A. Bocan、M. S. Gravielle 等 6 位作者2013-03-11arXiv

Experimental diffraction patterns produced by grazing scattering of fast helium atoms from a Ag(110) surface are used as a sensitive tool to test both the scattering and the potential models. To describe the elastic collision process we employ the surface eikonal (SE) approximation, which is a semi-classical method th…

Materials Sciencephysics.atom-ph