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Hysteretic and chaotic dynamics of viscous drops in creeping flows with rotation

Yuan N. Young、Jerzy Blawzdziewicz、Vitorio Cristini 等 4 位作者2007-12-21arXiv

It has been shown in our previous publication (Blawzdziewicz,Cristini,Loewenberg,2003) that high-viscosity drops in two dimensional linear creeping flows with a nonzero vorticity component may have two stable stationary states. One state corresponds to a nearly spherical, compact drop stabilized primarily by rotation,…

Soft Condensed MatterMaterials Science

Optical Fiber Sensing Using Quantum Dots

P. A. S. Jorge、Manuel A. Martins、Tito Trindade 等 5 位作者2007-12-21Sensors

Recent advances in the application of semiconductor nanocrystals, or quantumdots, as biochemical sensors are reviewed. Quantum dots have unique optical properties thatmake them promising alternatives to traditional dyes in many luminescence basedbioanalytical techniques. An overview of the more relevant progresses in…

Advanced biosensing and bioanalysis techniquesBiosensors and Analytical DetectionQuantum Dots Synthesis And Properties

Improvement of conductivity of electrochemically synthesized polyaniline

Sambhu Bhadra、Santanu Chattopadhyay、Nikhil K. Singha 等 4 位作者2007-12-21Journal of Applied Polymer Science

Abstract The electrochemical polymerization of aqueous solution of aniline and HCl was carried out in a single compartment electrochemical cell. After 2 h of the polymerization reaction, polarity of the electrodes was reversed and kept for 1 h. By this process the conductivity of the polyaniline (PAni) formed was foun…

Conducting polymers and applicationsElectrochemical sensors and biosensorsAnalytical Chemistry and Sensors

Density-Functional Characterization of the Multiferroicity in Spin Spiral Chain Cuprates

Hongjun Xiang、Myung‐Hwan Whangbo2007-12-21Physical Review Letters

The ferroelectricity of the spiral magnets LiCu2O2 and LiCuVO4 was examined by calculating the electric polarizations of their spin spiral states on the basis of density-functional theory with spin-orbit coupling. Our work unambiguously reveals that spin-orbit coupling is responsible for the ferroelectricity with the…

Multiferroics and related materialsAdvanced Condensed Matter PhysicsMagnetic and transport properties of perovskites and related materials

Engineering Composite Oxide SOFC Anodes for Efficient Oxidation of Methane

Guntae Kim、Gaël Corre、John T. S. Irvine 等 5 位作者2007-12-21Electrochemical and Solid-State Letters

Ceramic anodes for solid oxide fuel cells (SOFCs) were prepared by aqueous impregnation of nitrate salts to produce composites with (LSCM) in a 65% porous yttria-stabilized zirconia (YSZ) scaffold. Scanning electron micrographs indicate that the LSCM coats the YSZ pores following calcination at . Composites produced i…

Catalysis and Oxidation ReactionsElectronic and Structural Properties of OxidesAdvancements in Solid Oxide Fuel Cells

Thermodynamics of Carrier-Mediated Magnetism in Semiconductors

A. G. Petukhov、Igor Žutić、Steven C. Erwin2007-12-21Physical Review Letters

We propose a model of carrier-mediated ferromagnetism in semiconductors that accounts for the temperature dependence of the carriers. The model permits analysis of the thermodynamic stability of competing magnetic states, opening the door to the construction of magnetic phase diagrams. As an example, we analyze the st…

ZnO doping and propertiesQuantum and electron transport phenomenaMagnetic and transport properties of perovskites and related materials

Crystal growth and elasticity

P. Muller2007-12-21arXiv

The purpose of this paper is to review some elasticity effects in epitaxial growth. We start by a description of the main ingredients needed to describe elasticity effects (elastic interactions, surface stress, bulk and surface elasticity, thermodynamics of stressed solids). Then we describe how bulk and surface elast…

Materials Science

Magnetoelectric effect in a Ni–PZT–Ni cylindrical layered composite synthesized by electro-deposition

Dean Pan、Y Bai、W.Y. Chu 等 4 位作者2007-12-21Journal of Physics D Applied Physics

Magnetoelectric (ME) coupling of a cylindrical trilayered composite was studied in this paper. A Ni–lead zirconate titanate (PZT)-Ni trilayered cylindrical composite was synthesized by electro-deposition. The maximum ME voltage coefficient of the cylindrical ME composite is 35 V cm −1 Oe −1 , about three times higher…

Multiferroics and related materialsFerroelectric and Piezoelectric MaterialsSmart Materials for Construction

New Insight into Hierarchical Structures of Carbon Black Dispersed in Polymer Matrices: A Combined Small-Angle Scattering Study

Tadanori Koga、Takeji Hashimoto、Mikihito Takenaka 等 8 位作者2007-12-21Macromolecules

Using a combined ultra-small-angle and small-angle scattering (CSAS) method of neutrons and X-rays, we investigated hierarchical structures of carbon black (CB) highly loaded in polyisoprene (PI) and poly(styrene- random -butadiene) copolymer (SBR) under mechanical field (defined respectively as CB/PI and CB/SBR) as w…

Material Dynamics and PropertiesPolymer crystallization and propertiesPolymer Nanocomposites and Properties

Solution Control of Radiative and Nonradiative Lifetimes: A Novel Contribution to Quantum Dot Blinking Suppression

Vasiliy Fomenko、David J. Nesbitt2007-12-21Nano Letters

Time-correlated single photon counting methods are used with confocal microscopy and maximum likelihood estimation analysis to obtain fluorescence lifetime trajectories for single quantum dots with KHz update rates. This technique reveals that control of the solution environment can influence both radiative (k(rad)) a…

Carbon and Quantum Dots ApplicationsChalcogenide Semiconductor Thin FilmsQuantum Dots Synthesis And Properties

Quantum Monte Carlo calculations of structural properties of FeO under pressure

Jindrich Kolorenc、Lubos Mitas2007-12-21arXiv

We determine the equation of state of stoichiometric FeO employing the diffusion Monte Carlo method. The fermionic nodes are fixed to those of a wave function having the form of a single Slater determinant. The calculated ambient pressure properties (lattice constant, bulk modulus and cohesive energy) agree very well…

Strongly Correlated ElectronsMaterials Science

The charge flipping algorithm

G. Oszlányi、András Sütö2007-12-21Acta Crystallographica Section A Foundations of Crystallography

This paper summarizes the current state of charge flipping, a recently developed algorithm of ab initio structure determination. Its operation is based on the perturbation of large plateaus of low electron density but not directly on atomicity. Such a working principle radically differs from that of classical direct m…

Nuclear Physics and ApplicationsCrystallography and Radiation PhenomenaX-ray Diffraction in Crystallography

Dynamics of vortex-antivortex pairs in ferromagnets

Stavros Komineas、Nikos Papanicolaou2007-12-21arXiv

We study the dynamics of vortex-antivortex (VA) pairs in an infinitely thin ferromagnetic film with easy-plane anisotropy. These are localized excitations with finite energy that are characterized by a topological (skyrmion) number N = 0,+1,-1. Topologically trivial (N=0) VA pairs undergo Kelvin motion analogous to th…

Mesoscale and Nanoscale PhysicsMaterials Science

Vibronic polarons: comments on a model for the colossal field-resistance effects in manganites

Mladen Georgiev2007-12-21arXiv

In addition to mechanisms already proposed to account for the formation in manganites of a small-polaron superlattice above the Curie temperature Tc and to a metallic-like sea of large polarons below Tc, we now consider other observed colossal-resistance inducing fields, such as magnetic, electric, photon, or strain f…

Strongly Correlated ElectronsMaterials Science

First-principles LDA+U and GGA+U study of plutonium oxides

Bo Sun、Ping Zhang、Xian-Geng Zhao2007-12-21arXiv

The electronic structure and properties of PuO$_{2}$ and Pu$_{2}$O$_{3}$ have been studied from first principles by the all-electron projector-augmented-wave (PAW) method. The local density approximation (LDA)+$U$ and the generalized gradient approximation (GGA)+$U$ formalism have been used to account for the strong o…

Strongly Correlated ElectronsMaterials Science

Ultralow Thermal Conductivity of Isotope-Doped Silicon Nanowires

Nuo Yang、Gang Zhang、Baowen Li2007-12-21Nano Letters

The thermal conductivity of silicon nanowires (SiNWs) is investigated by molecular dynamics (MD) simulation. It is found that the thermal conductivity of SiNWs can be reduced exponentially by isotopic defects at room temperature. The thermal conductivity reaches the minimum, which is about 27% of that of pure 28Si NW,…

Advancements in Semiconductor Devices and Circuit DesignNanowire Synthesis and ApplicationsThermal properties of materials

Structure determination from powder diffraction data

William I. F. David、Kenneth Shankland2007-12-21OpenAlex

Advances made over the past decade in structure determination from powder diffraction data are reviewed with particular emphasis on algorithmic developments and the successes and limitations of the technique. While global optimization methods have been successful in the solution of molecular crystal structures, new me…

Crystallization and Solubility StudiesX-ray Diffraction in CrystallographyCrystallography and molecular interactions

Chemical Effects of a High CO2 Concentration in Oxy-Fuel Combustion of Methane

Peter Glarborg、Line L. B. Bentzen2007-12-21OpenAlex

The oxidation of methane in an atmospheric-pressure flow reactor has been studied experimentally under highly diluted conditions in N 2 and CO 2, respectively. The stoichiometry was varied from fuel-lean to fuel-rich, and the temperatures covered the range 1200–1800 K. The results were interpreted in terms of a detail…

Combustion and flame dynamicsCatalytic Processes in Materials ScienceAdvanced Combustion Engine Technologies

Structural Rearrangements That Govern Flow in Colloidal Glasses

Peter Schall、David A. Weitz、F. Spaepen2007-12-21OpenAlex

Structural rearrangements are an essential property of atomic and molecular glasses; they are critical in controlling resistance to flow and are central to the evolution of many properties of glasses, such as their heat capacity and dielectric constant. Despite their importance, these rearrangements cannot directly be…

Glass properties and applicationsMetallic Glasses and Amorphous AlloysMaterial Dynamics and Properties

Role of Intermolecular Forces in Defining Material Properties of Protein Nanofibrils

Tuomas P. J. Knowles、Anthony W. P. Fitzpatrick、Sarah Meehan 等 7 位作者2007-12-21OpenAlex

Protein molecules have the ability to form a rich variety of natural and artificial structures and materials. We show that amyloid fibrils, ordered supramolecular nanostructures that are self-assembled from a wide range of polypeptide molecules, have rigidities varying over four orders of magnitude, and constitute a c…

Alzheimer's disease research and treatmentsSupramolecular Self-Assembly in MaterialsProtein Structure and Dynamics