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Anomalous compressibility of ferropericlase throughout the iron spin crossover

R. M. Wentzcovitch、J. F. Justo、Z. Wu 等 6 位作者2013-07-11arXiv

The thermoelastic properties of ferropericlase Mg1-xFexO (x = 0.1875) throughout the iron high-to-low spin crossover have been investigated by first principles at Earth's lower mantle conditions. This crossover has important consequences for elasticity such as an anomalous bulk modulus (KS) reduction. At room temperat…

Materials Science

Stability and plasticity of silicon nanowires: the role of wire perimeter

J. . F. Justo、R. D. Menezes、L. V. C. Assali2013-07-11arXiv

We investigated the properties of stability and plasticity of silicon nanowires using molecular dynamics simulations. We considered nanowires with <100>, <110> and <112> growth directions with several diameters and surface facet configurations. We found that the wire perimeter, and not the wire diameter, is the meanin…

Materials Science

Novel linear algebraic theory and one-hundred-million-atom electronic structure calculation on the K computer

Takeo Hoshi、Keita Yamazaki、Yohei Akiyama2013-07-11arXiv

A novel linear-algebraic algorithm, multiple Arnoldi method, was developed in an interdisciplinary study between physics and applied mathematics and realized one-hundred-million-atom (100-nm-scale) electronic state calculations on the K computer. The algorithms are Krylov-subspace solvers for generalized shifted linea…

Materials Sciencephysics.comp-ph

A Nonlinear Theory of Prestressed Elastic Stick-and-Spring Structures

Antonino Favata、Andrea Micheletti、Paolo Podio-Guidugli2013-07-11arXiv

The discrete modeling of a large class of mechanical structures can be based on a stick-and-spring concept. We here present a stick-and-spring theory with potential application to the statics and the dynamics of such nanostructures as graphene, carbon nanotubes, viral capsids, and others. A key feature of our theory i…

Materials Science

Large Linear Magnetoresistance and Shubnikov-de Hass Oscillations in Single Crystals of YPdBi Heusler Topological Insulators

Wenhong Wang、Yin Du、Guizhou Xu 等 10 位作者2013-07-11arXiv

We report the observation of a large linear magnetoresistance (MR) and Shubnikov-de Hass (SdH) quantum oscillations in single crystals of YPdBi Heusler topological insulators. Owning to the successfully obtained the high-quality YPdBi single crystals, large non-saturating linear MR of as high as 350% at 5K and over 12…

Materials Science

Flaw-driven Failure in Nanostructures

X. Wendy Gu、Zhaoxuan Wu、Yong-Wei Zhang 等 5 位作者2013-07-11arXiv

Understanding failure in nanomaterials is critical for the design of reliable structural materials and small-scale devices that have components or microstructural elements at the nanometer length scale. No consensus exists on the effect of flaws on fracture in bulk nanostructured materials or in nanostructures. Propos…

Materials Science

Room temperature single-crystal diffuse scattering and ab initio lattice dynamics in CaTiSiO5

M. J. Gutmann、K. Refson、M. v. Zimmermann 等 6 位作者2013-07-11arXiv

Single-crystal diffuse scattering data have been collected at room temperature on synthetic titanite using both neutrons and high-energy X-rays. A simple ball-and-springs model reproduces the observed diffuse scattering well, confirming its origin to be primarily due to thermal motion of the atoms. Ab initio phonons a…

Materials Science

A short circuit in the electrical cables with polymer insulation: a new look at the cause of its occurrence and non-traditional ways of solving the problem

V. I. Kryshtob、D. V. Vlasov、V. F. Mironov 等 8 位作者2013-07-11arXiv

It is known that most of the electrical cables use as insulation compositions based on polyvinyl chloride. Like most polymers, the latter is quite sensitive to thermal aging, which is not without reason, to be one of the main causes of the various types of faults in the polymeric insulation, leading eventually to a sh…

physics.ins-detMaterials Science

Barrier Height Formation in Organic Blends / Metal Interfaces: Case of (TTF-TCNQ) / Au(111)

Jose Ignacio Martinez、Enrique Abad、Juan Beltran 等 5 位作者2013-07-11arXiv

The interface between the tetrathiafulvalene / tetracyanoquinodimethane (TTFTCNQ) organic blend and the Au(111) metal surface is analyzed by Density Functional Theory calculations, including the effect of the charging energies on the molecule transport gaps. Given the strong donor and acceptor characters of the TTF an…

Materials Science

PVC composite internal process of current-voltage time delay formation and conductivity levels lifetimes origin

D. V. Vlasov2013-07-11arXiv

In the previously described model of interpreting the numerous results in the switching states of the conduction in the films of PVC composites [1,2] was noted the need to involve hopping mechanism and percolation theory to explain the phenomenon of giant jumps conductivity, just as was done for the interpretation of…

Materials ScienceMesoscale and Nanoscale Physics

Two-electron reduction of ethylene carbonate: a quantum chemistry re-examination of mechanisms

Kevin Leung2013-07-11arXiv

Passivating solid-electrolyte interphase (SEI) films arising from electrolyte decomposition on low-voltage lithium ion battery anode surfaces are critical for battery operations. We review the recent theoretical literature on electrolyte decomposition and emphasize the modeling work on two-electron reduction of ethyle…

Chemical PhysicsMaterials Science

Photoinduced stabilization and enhancement of the ferroelectric polarization in Ba0.1Sr0.9TiO3/La0.7Ca(Sr)0.3MnO3thin film heterostructures

Yu‐Miin Sheu、S. A. Trugman、Liqin Yan 等 8 位作者2013-07-11Physical Review B

An emerging area in condensed matter physics is the use of multilayered heterostructures to enhance ferroelectricity in complex oxides. Here we demonstrate that optically pumping carriers across the interface between thin films of a ferroelectric (FE) insulator and a ferromagnetic metal can significantly enhance the F…

Ferroelectric and Piezoelectric MaterialsMagnetic and transport properties of perovskites and related materialsMultiferroics and related materials

Spinodal Gap Dependence on Size and Boundary Reaction Rate for Intercalation in Nanoparticles

E. Pogorelov、M. Fleck、H. Federmann 等 5 位作者2013-07-11arXiv

Using mathematical model for intercalation dynamics in phase-separating materials proposed in (Singh, G. K.; Ceder, G.; Bazant, M. Z. Electrochimica Acta 2008, 53, 7599) and developed further in (Burch, D.; Bazant, M. Z. Nano Letters 2009, 9, 3795) we found that the spinodal gap generally shrinks as the particle size…

Materials Science

Tailoring relaxation time spectrum in soft glassy materials

Manish Kaushal、Yogesh M. Joshi2013-07-11The Journal of Chemical Physics

Physical properties of out of equilibrium soft materials depend on time as well as deformation history. In this work we propose to transform this major shortcoming into gain by applying controlled deformation field to tailor the rheological properties. We take advantage of the fact that deformation field of a certain…

Pickering emulsions and particle stabilizationMaterial Dynamics and PropertiesLiquid Crystal Research Advancements

The influence of electrospun scaffold topography on endothelial cell morphology, alignment, and adhesion in response to fluid flow

Bryce M. Whited、Marissa Nichole Rylander2013-07-11Biotechnology and Bioengineering

Bioengineered vascular grafts provide a promising alternative to autografts for replacing diseased or damaged arteries, but necessitate scaffold designs capable of supporting a confluent endothelium that resists endothelial cell (EC) detachment under fluid flow. To this end, we investigated whether tuning electrospun…

Cardiac and Coronary Surgery TechniquesTissue Engineering and Regenerative MedicineElectrospun Nanofibers in Biomedical Applications

Nanotechnology for cancer treatment

William H. Gmeiner、Supratim Ghosh2013-07-11Nanotechnology Reviews

Nanotechnology has the potential to increase the selectivity and potency of chemical, physical, and biological approaches for eliciting cancer cell death while minimizing collateral toxicity to nonmalignant cells. Materials on the nanoscale are increasingly being targeted to cancer cells with great specificity through…

Nanoparticle-Based Drug DeliveryGraphene and Nanomaterials ApplicationsNanoplatforms for cancer theranostics

Multifunctional Upconversion Mesoporous Silica Nanostructures for Dual Modal Imaging and In Vivo Drug Delivery

Chunxia Li、Dongmei Yang、Ping’an Ma 等 10 位作者2013-07-11Small

Incorporating the agents for magnetic resonance imaging (MRI), optical imaging, and therapy in one nanostructured matrix to construct multifunctional nanomedical platform has attracted great attention for simultaneous diagnostic and therapeutic applications. In this work, a facile methodology is developed to construct…

Luminescence and Fluorescent MaterialsNanoplatforms for cancer theranosticsLuminescence Properties of Advanced Materials

Linear and nonlinear optical properties of ZnO/ZnS and ZnS/ZnO core shell quantum dots: Effects of shell thickness, impurity, and dielectric environment

Zaiping Zeng、Christos S. Garoufalis、Andreas Terzis 等 4 位作者2013-07-11Journal of Applied Physics

In the present work, we investigated theoretically the linear, nonlinear, and total absorption coefficients and refractive index changes associated with intersubband transitions in ZnO/ZnS core shell quantum dot (CSQD) and ZnS/ZnO inverted CSQD (ICSQD), emphasizing on the influence of the shell thickness, impurity, an…

ZnO doping and propertiesChalcogenide Semiconductor Thin FilmsQuantum Dots Synthesis And Properties

Covalently Interconnected Three-Dimensional Graphene Oxide Solids

Parambath M. Sudeep、Tharangattu N. Narayanan、Aswathi Ganesan 等 13 位作者2013-07-11ACS Nano

The creation of three-dimensionally engineered nanoporous architectures via covalently interconnected nanoscale building blocks remains one of the fundamental challenges in nanotechnology. Here we report the synthesis of ordered, stacked macroscopic three-dimensional (3D) solid scaffolds of graphene oxide (GO) fabrica…

Supercapacitor Materials and FabricationGraphene research and applicationsCovalent Organic Framework Applications

Deposition of Three-Dimensional Graphene Aerogel on Nickel Foam as a Binder-Free Supercapacitor Electrode

Shibing Ye、Jiachun Feng、Peiyi Wu2013-07-11OpenAlex

We reported a new type of graphene aerogel-nickel foam (GA@NF) hybrid material prepared through a facile two-step approach and explored its energy storage application as a binder-free supercapacitor electrode. By simple freeze-drying and the subsequent thermal annealing of graphene oxide hydrogel-NF hybrid precursor,…

Advanced Sensor and Energy Harvesting MaterialsSupercapacitor Materials and FabricationAdvancements in Battery Materials