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Unraveling Orbital Ordering inLa0.5Sr1.5MnO4

S. S. Dhesi、Alessandro Mirone、C. De Nadaï 等 11 位作者2004-02-05Physical Review Letters

Orbital ordering (OO) in the layered perovskite La0.5Sr1.5MnO4 has been investigated using the enhanced sensitivity of soft x-ray resonant diffraction at the Mn L edges. The energy dependence of an OO diffraction peak over the L(2,3) edges is compared to ligand-field calculations allowing a distinction between the inf…

Rare-earth and actinide compoundsAdvanced Condensed Matter PhysicsMagnetic and transport properties of perovskites and related materials

Nanorod-Direct Oriented Attachment Growth and Promoted Crystallization Processes Evidenced in Case of ZnWO4

Biao Liu、Shu‐Hong Yu、Linjie Li 等 7 位作者2004-02-05The Journal of Physical Chemistry B

Single-crystal ZnWO 4 nanorods can direct the self-aggregation of the amorphous nanoparticulates and promote the crystallization and transformation process of the amorphous nanoparticulates derived from a simple supersaturation precipitation reaction in a nanorod/amorphous nanoparticle coexisting system under refluxin…

Luminescence Properties of Advanced MaterialsGlass properties and applicationsTransition Metal Oxide Nanomaterials

Surface Sol−Gel Modification of Mesoporous Silica Materials with TiO2 for the Assembly of Ultrasmall Gold Nanoparticles

Wenfu Yan、Bei Chen、Shannon M. Mahurin 等 6 位作者2004-02-05The Journal of Physical Chemistry B

The surface sol−gel method has been demonstrated to be an effective method for the modification of silica mesopore surfaces and the tuning of mesopore diameters. This layer-by-layer approach allows the control of mesopore diameters with monolayer precision. Ultrasmall gold nanoparticles were successfully prepared on s…

Catalytic Processes in Materials ScienceMesoporous Materials and CatalysisElectrocatalysts for Energy Conversion

Profiling the Thermoelectric Power of Semiconductor Junctions with Nanometer Resolution

Ho-Ki Lyeo、Alexander A. Khajetoorians、Li Shi 等 7 位作者2004-02-05Science

We have probed the local thermoelectric power of semiconductor nanostructures with the use of ultrahigh-vacuum scanning thermoelectric microscopy. When applied to a p-n junction, this method reveals that the thermoelectric power changes its sign abruptly within 2 nanometers across the junction. Because thermoelectric…

Thermal Radiation and Cooling TechnologiesAdvanced Thermoelectric Materials and DevicesThermal properties of materials

Muonium as a shallow center in GaN

K. Shimomura、R. Kadono、K. Ohishi 等 8 位作者2004-02-05arXiv

A paramagnetic muonium (Mu) state with an extremely small hyperfine parameter was observed for the first time in single-crystalline GaN below 25 K. It has a highly anisotropic hyperfine structure with axial symmetry along the [0001] direction, suggesting that it is located either at a nitrogen-antibonding or a bond-ce…

Materials Science

Resonance-like electrical control of electron spin for microwave measurement

B. A. Glavin、K. W. Kim2004-02-05arXiv

We demonstrate that the spin-polarized electron current can interact with a microwave electric field in a resonant manner. The spin-orbit interaction gives rise to an effective magnetic field proportional to the electric current. In the presence of both dc and ac electric field components, electron spin resonance occu…

Mesoscale and Nanoscale PhysicsMaterials Science

An Off-lattice Model for Br Electrodeposition on Au(100): from DFT to Experiment

S. J. Mitchell、M. T. M. Koper2004-02-05arXiv

Since Br adsorption on Au(100) displays an incommensurate ordered phase, a lattice-gas treatment of the adlayer configurations is not reliable. We therefore use density functional theory slab calculations to determine the parameters necessary for the construction of an off-lattice model. We compute and analyze the tot…

cond-mat.stat-mechMaterials Science

High-Temperature Hall Effect in Ga(1-x)Mn(x)As

D. Ruzmetov、J. Scherschligt、David V. Baxter 等 9 位作者2004-02-05arXiv

The temperature dependence of the Hall coefficient of a series of ferromagnetic Ga(1-x)Mn(x)As samples is measured in the temperature range 80K < T < 500K. We model the Hall coefficient assuming a magnetic susceptibility given by the Curie-Weiss law, a spontaneous Hall coefficient proportional to rho_xx^2(T), and incl…

Materials Science

Calculating the Electron Paramagnetic Resonance Parameters of Exchange Coupled Transition Metal Complexes Using Broken Symmetry Density Functional Theory: Application to a MnIII/MnIV Model Compound

Sebastian Sinnecker、Frank Neese、Louis Noodleman 等 4 位作者2004-02-05Journal of the American Chemical Society

The capability of the density functional broken symmetry approach for the calculation of various EPR parameters of exchange coupled metal clusters is demonstrated by studying the experimentally well-investigated [Mn(III)Mn(IV)(mu-O)(2)(mu-OAc)DTNE](2+) complex. Geometry optimizations of the complex in its broken symme…

Metal-Catalyzed Oxygenation MechanismsLanthanide and Transition Metal ComplexesMagnetism in coordination complexes

First principle computation of stripes in cuprates

V. I. Anisimov、M. A. Korotin、A. S. Mylnikova 等 5 位作者2004-02-05arXiv

We present a first principle computation of vertical stripes in $La_{15/8}Sr_{1/8}CuO_4$ within the LDA+U method. We find that Cu centered stripes are unstable toward O centered stripes. The metallic core of the stripe is quite wide and shows reduced magnetic moments with suppressed antiferromagnetic (AF) interactions…

Materials ScienceSuperconductivityStrongly Correlated Electrons

Metallic "Ferroelectricity" in the Pyrochlore Cd2Re2O7

I. A. Sergienko、V. Keppens、M. McGuire 等 11 位作者2004-02-05arXiv

A class of materials known as ``ferroelectric metals'' was discussed theoretically by Anderson and Blount in 1965 [Phys. Rev. Lett. 14, 217 (1965)], but to date no examples of this class have been reported. Here we present measurements of the elastic moduli of Cd2Re2O7 through the 200 K cubic-to-tetragonal phase trans…

Materials ScienceStrongly Correlated Electrons

The interface between silicon and a high-k oxide

Clemens J. Foerst、Christopher R. Ashman、Karlheinz Schwarz 等 4 位作者2004-02-05arXiv

The ability to follow Moore's Law has been the basis of the tremendous success of the semiconductor industry in the past decades. To date, the greatest challenge for device scaling is the required replacement of silicon dioxide-based gate oxides by high-k oxides in transistors. Around 2010 high-k oxides are required t…

Materials Science

La 0.95 Sr 0.05 CoO 3 : An efficient room-temperature thermoelectric oxide

John Androulakis、P. Migiakis、J. Giapintzakis2004-02-05Applied Physics Letters

We present measurements of electrical resistivity, thermal conductivity, and thermopower of polycrystalline Sr-doped LaCoO3 with composition La0.95Sr0.05CoO3. Our data show that the investigated compound exhibits a very respectable room-temperature thermoelectric figure of merit value of 0.18. Our results not only sho…

Thermal Expansion and Ionic ConductivityAdvanced Thermoelectric Materials and DevicesMagnetic and transport properties of perovskites and related materials

Curvature effects on the structural, electronic and optical properties of isolated single-walled carbon nanotubes within a symmetry-adapted non-orthogonal tight-binding model

V. N. Popov2004-02-05New Journal of Physics

The effects of curvature on the structure, electronic and optical properties of isolated single-walled carbon nanotubes are studied within a symmetry-adapted non-orthogonal tight-binding model using 2s and 2p electrons of carbon. The symmetry-adapted scheme allows reducing the matrix eigenvalue problem for the electro…

Carbon Nanotubes in CompositesBoron and Carbon Nanomaterials ResearchGraphene research and applications

Nanoscale-twinning-induced strengthening in austenitic stainless steel thin films

X. Zhang、Amit Misra、Haiyan Wang 等 8 位作者2004-02-05Applied Physics Letters

Magnetron-sputter-deposited austenitic 330 stainless steel (330 SS) films, several microns thick, were found to have a hardness ∼6.5 GPa, about an order of magnitude higher than bulk 330 SS. High-resolution transmission electron microscopy revealed that sputtered 330 SS coatings are heavily twinned on {111} with nanom…

Microstructure and mechanical propertiesMetal and Thin Film MechanicsForce Microscopy Techniques and Applications

Energy Transfer in Aqueous Solutions of Oppositely Charged CdSe/ZnS Core/Shell Quantum Dots and in Quantum Dot−Nanogold Assemblies

Richard Wargnier、А. В. Баранов、В. Г. Маслов 等 8 位作者2004-02-05Nano Letters

We demonstrate that the nanoscale assemblies of water-solubilized, oppositely charged CdSe/ZnS core/shell quantum dots and of quantum dots and nanogold particles make it possible to develop FRET-based sensors with a donor quenching efficiency close to 100%. The cw and time-resolved photoluminescence analysis of nanoas…

Quantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin FilmsAdvanced biosensing and bioanalysis techniques

Electrospinning of continuous aligned polymer fibers

Bibekananda Sundaray、V. Subramanian、T. S. Natarajan 等 6 位作者2004-02-05OpenAlex

Electrospinning is a technique employed for preparing polymer fibers having diameters in the range of 10 μm–10 nm using high electrostatic field. In this letter, we report the formation of aligned polymer fibers, several centimeters in length, with separation between the fibers in the range of 5–100 μm. Achieving alig…

Conducting polymers and applicationsElectrospun Nanofibers in Biomedical ApplicationsAdvanced Sensor and Energy Harvesting Materials

Thermoelectricity in Semiconductor Nanostructures

Arun Majumdar2004-02-05OpenAlex

Thermoelectrics are devices that convert heat to electricity directly, or vice versa. To be technologically useful, thermoelectric materials with high efficiency must be found, along with better tools to understand them. In his Perspective, Majumdar discusses the reports by Hsu et al . and Lyeo et al . that tackle the…

Advanced Thermoelectric Materials and DevicesThermal Radiation and Cooling TechnologiesThermal properties of materials