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High-speed metal-insulator transition in vanadium dioxide films induced by an electrical pulsed voltage over nano-gap electrodes

Jonathan Leroy、Aurélian Crunteanu、Annie Bessaudou 等 6 位作者2012-05-21Applied Physics Letters

We report the fabrication of VO2-based two terminal devices with ∼125-nm gaps between the two electrodes, using a simple, cost-effective method employing optical lithography and shadow evaporation. Current-voltage characteristics of the obtained devices show a main abrupt metal-insulator transition (MIT) in the VO2 fi…

Advanced Memory and Neural ComputingGas Sensing Nanomaterials and SensorsTransition Metal Oxide Nanomaterials

Electrical transport across Au/Nb:SrTiO3 Schottky interface with different Nb doping

K. G. Rana、V. Khikhlovskyi、T. Banerjee2012-05-21Applied Physics Letters

We have investigated electron transport in Nb doped SrTiO3 single crystals for two doping densities. We find that the resistivity and mobility are temperature dependent in both whereas the carrier concentration is almost temperature invariant. We rationalize this using the hydrogenic theory for shallow donors. Further…

Electronic and Structural Properties of OxidesSemiconductor materials and devicesSemiconductor materials and interfaces

Crystal growth as an excitable medium

Julyan H. E. Cartwright、Antonio G. Checa、Bruno Escribano 等 4 位作者2012-05-21Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences

Crystal growth has been widely studied for many years, and, since the pioneering work of Burton, Cabrera and Frank, spirals and target patterns on the crystal surface have been understood as forms of tangential crystal growth mediated by defects and by two-dimensional nucleation. Similar spirals and target patterns ar…

Theoretical and Computational PhysicsCalcium Carbonate Crystallization and InhibitionAdvanced Materials and Mechanics

Mechanical annealing of metallic electrodes at the atomic scale

C. Sabater、C. Untiedt、J. J. Palacios 等 4 位作者2012-05-21arXiv

The process of creating an atomically defined and robust metallic tip is described and quantified using measurements of contact conductance between gold electrodes and numerical simulations. Our experiments show how the same conductance behavior can be obtained for hundreds of cycles of formation and rupture of the na…

Materials Science

Giant Resistance Change across the Phase Transition in Spin-Crossover Molecules

N. Baâdji、Stefano Sanvito2012-05-21Physical Review Letters

The electronic origin of a large resistance change in nanoscale junctions incorporating spin-crossover molecules is demonstrated theoretically by using a combination of density functional theory and the nonequilibrium Green's function method for quantum transport. At the spin-crossover phase transition, there is a dra…

Magnetism in coordination complexesQuantum and electron transport phenomenaMolecular Junctions and Nanostructures

Systematic search for low-enthalpy sp3 carbon using evolutionary metadynamics

Qiang Zhu、Qingfeng Zeng、Artem R. Oganov2012-05-21arXiv

We present a systematic search for low-energy metastable superhard carbon allotropes by using the recently developed evolutionary metadynamics technique. It is known that cold compression of graphite produces an allotrope at 15-20 GPa. Here we look for all low-enthalpy structures accessible from graphite. Starting fro…

Materials Science

"Annular" ferroelectric domains in hexagonal manganites

J. Q. Li、J. Li、H. X. Yang 等 8 位作者2012-05-21arXiv

Structural features of ferroic domains are fundamentally important for the understanding of microstructure and physical properties of ferroic materials, and they are also of technological significance for information storage and electronic switches. There are three well-known forms of ferroic orders in correlation wit…

Materials Science

Crystal Engineering of Stable Temozolomide Cocrystals

N.J. Babu、Palash Sanphui、Ashwini Nangia2012-05-21Chemistry - An Asian Journal

The antitumor prodrug temozolomide (TMZ) decomposes in aqueous medium of pH≥7 but is relatively stable under acidic conditions. Pure TMZ is obtained as a white powder but turns pink and then brown, which is indicative of chemical degradation. Pharmaceutical cocrystals of TMZ were engineered with safe coformers such as…

X-ray Diffraction in CrystallographyInorganic Chemistry and MaterialsMachine Learning in Materials Science

Controlling The Activator Site To Tune Europium Valence in Oxyfluoride Phosphors

Kuan‐Wei Huang、Wei‐Ting Chen、Cheng-I Chu 等 8 位作者2012-05-21Chemistry of Materials

A new Eu 3+ -activated oxyfluoride phosphor Ca 12 Al 14 O 32 F 2:Eu 3+ (CAOF:Eu 3+ ) was synthesized by a solid state reaction. Commonly red line emission was detected in the range of 570–700 nm. To achieve the requirement of illumination, this study revealed a crystal chemistry approach to reduce Eu ions from 3+ to 2…

Ammonia Synthesis and Nitrogen ReductionLuminescence Properties of Advanced MaterialsInorganic Fluorides and Related Compounds

“Face-Lifting” and “Make-Up” for Microorganisms: Layer-by-Layer Polyelectrolyte Nanocoating

Rawil Fakhrullin、Yuri Lvov2012-05-21ACS Nano

Layer-by-layer encapsulation of living biological cells and other microorganisms via sequential adsorption of oppositely charged functional nanoscale components is a promising instrument for engineering cells with enhanced properties and artificial microorganisms. Such nanoarchitectural shells assembled in mild aqueou…

Molecular Junctions and NanostructuresPolymer Surface Interaction StudiesElectrophoretic Deposition in Materials Science

Recent Progress and Challenges in Graphene Nanoribbon Synthesis

Liang Ma、Jinlan Wang、Feng Ding2012-05-21ChemPhysChem

Graphene, the thinnest two-dimensional material in nature, has abundant distinctive properties, such as ultrahigh carrier mobility, superior thermal conductivity, very high surface-to-volume ratio, anomalous quantum Hall effect, and so on. Laterally confined, thin, and long strips of graphene, namely, graphene nanorib…

Carbon Nanotubes in CompositesMolecular Junctions and NanostructuresGraphene research and applications

Electronic Structure of Spatially Aligned Graphene Nanoribbons on Au(788)

Steffen Linden、Dingyong Zhong、Alexander Timmer 等 11 位作者2012-05-21Physical Review Letters

We report on a bottom-up approach of the selective and precise growth of subnanometer wide straight and chevron-type armchair nanoribbons (GNRs) on a stepped Au(788) surface using different specific molecular precursors. This process creates spatially well-aligned GNRs, as characterized by STM. High-resolution direct…

Molecular Junctions and NanostructuresSurface and Thin Film PhenomenaGraphene research and applications

Anomalous Size Dependence of the Thermal Conductivity of Graphene Ribbons

Denis L. Nika、A. S. Askerov、Alexander A. Balandin2012-05-21arXiv

We investigated the thermal conductivity K of graphene ribbons and graphite slabs as the function of their lateral dimensions. Our theoretical model considered the anharmonic three-phonon processes to the second-order and included the angle-dependent phonon scattering from the ribbon edges. It was found that the long…

Thermal properties of materialsGraphene research and applicationsThermal Radiation and Cooling Technologies

The role of dilation and confining stresses in shear thickening of dense suspensions

Eric Brown、Heinrich M. Jaeger2012-05-21OpenAlex

Many densely packed suspensions and colloids exhibit a behavior known as Discontinuous Shear Thickening in which the shear stress jumps dramatically and reversibly as the shear rate is increased. We performed rheometry and video microscopy measurements on a variety of suspensions to determine the mechanism for this be…

Granular flow and fluidized bedsRheology and Fluid Dynamics StudiesMaterial Dynamics and Properties

Angle-Resolved Raman Imaging of Interlayer Rotations and Interactions in Twisted Bilayer Graphene

Robin W. Havener、Houlong Zhuang、Lola Brown 等 5 位作者2012-05-21OpenAlex

Few-layer graphene is a prototypical layered material, whose properties are determined by the relative orientations and interactions between layers. Exciting electrical and optical phenomena have been observed for the special case of Bernal-stacked few-layer graphene, but structure-property correlations in graphene wh…

Quantum and electron transport phenomenaGraphene research and applicationsPlasmonic and Surface Plasmon Research

Thermal Transport in Three-Dimensional Foam Architectures of Few-Layer Graphene and Ultrathin Graphite

Michael T. Pettes、Hengxing Ji、Rodney S. Ruoff 等 4 位作者2012-05-21OpenAlex

At a very low solid concentration of 0.45 ± 0.09 vol %, the room-temperature thermal conductivity (κ(GF)) of freestanding graphene-based foams (GF), comprised of few-layer graphene (FLG) and ultrathin graphite (UG) synthesized through the use of methane chemical vapor deposition on reticulated nickel foams, was increa…

Graphene research and applicationsCarbon Nanotubes in CompositesThermal properties of materials

Polymer brushes here, there, and everywhere: Recent advances in their practical applications and emerging opportunities in multiple research fields

Omar Azzaroni2012-05-21OpenAlex

Abstract Bottom‐up surface processing with well‐defined polymeric structures becomes increasingly important in many current technologies. Polymer brushes, that is, assemblies of macromolecules tethered at one end to a substrate, provide an exemplary system of materials capable of achieving such a goal. While the focus…

Electrospun Nanofibers in Biomedical ApplicationsPolymer Surface Interaction StudiesDendrimers and Hyperbranched Polymers

Weak electron–phonon coupling contributing to high thermoelectric performance in n-type PbSe

Heng Wang、Yanzhong Pei、Aaron D. LaLonde 等 4 位作者2012-05-21OpenAlex

PbSe is a surprisingly good thermoelectric material due, in part, to its low thermal conductivity that had been overestimated in earlier measurements. The thermoelectric figure of merit, zT, can exceed 1 at high temperatures in both p-type and n-type PbSe, similar to that found in PbTe. While the p-type lead chalcogen…

Chalcogenide Semiconductor Thin FilmsAdvanced Thermoelectric Materials and DevicesHeusler alloys: electronic and magnetic properties

Mechanistic Insights into the Crystallization of Amorphous Calcium Carbonate (ACC)

Pieter Bots、Liane G. Benning、Juan Diego Rodriguez‐Blanco 等 5 位作者2012-05-21OpenAlex

Many organisms use amorphous calcium carbonate (ACC) during crystalline calcium carbonate biomineralization, as a means to control particle shape/size and phase stability. Here, we present an in situ small- and wide-angle X-ray scattering (SAXS/WAXS) study of the mechanisms and kinetics of ACC crystallization at rapid…

Calcium Carbonate Crystallization and InhibitionBuilding materials and conservationPaleontology and Stratigraphy of Fossils

Strong Metal–Support Interactions between Gold Nanoparticles and ZnO Nanorods in CO Oxidation

Xiaoyan Liu、Ming‐Han Liu、Yi‐Chia Luo 等 9 位作者2012-05-21OpenAlex

The catalytic performances of supported gold nanoparticles depend critically on the nature of support. Here, we report the first evidence of strong metal-support interactions (SMSI) between gold nanoparticles and ZnO nanorods based on results of structural and spectroscopic characterization. The catalyst shows encapsu…

Catalytic Processes in Materials ScienceCatalysis and Oxidation ReactionsElectrocatalysts for Energy Conversion