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Strain-induced half-metallic ferromagnetism in zinc blende CrP/MnP superlattice: First-principles study

Gul Rahman2010-04-07Physical Review B

Using first-principles calculations within generalized gradient approximation, the electronic and magnetic properties of zinc blende (zb) CrP/MnP superlattice are investigated. The equilibrium lattice constant is calculated to be $5.33\text{ }\text{\AA{}}$. The stability of ferromagnetic zb CrP/MnP superlattice agains…

2D Materials and ApplicationsMXene and MAX Phase MaterialsHeusler alloys: electronic and magnetic properties

Defining Contact at the Atomic Scale

Shengfeng Cheng、Mark O. Robbins2010-04-07arXiv

Molecular dynamics simulations are used to study different definitions of contact at the atomic scale. The roles of temperature, adhesive interactions and atomic structure are studied for simple geometries. An elastic, crystalline substrate contacts a rigid, atomically flat surface or a spherical tip. The rigid surfac…

Mesoscale and Nanoscale PhysicsMaterials Sciencephysics.comp-ph

Charge Noise in Graphene Transistors

Iddo Heller、Sohail Chatoor、Jaan Männik 等 8 位作者2010-04-07Nano Letters

We report an experimental study of 1/f noise in liquid-gated graphene transistors. We show that the gate dependence of the noise is well described by a charge-noise model, whereas Hooge's empirical relation fails to describe the data. At low carrier density, the noise can be attributed to fluctuating charges in close…

Graphene research and applicationsQuantum and electron transport phenomenaAdvancements in Semiconductor Devices and Circuit Design

High performance shape memory polymer networks based on rigid nanoparticle cores

Jianwen Xu、Jie Song2010-04-07Proceedings of the National Academy of Sciences

Smart materials that can respond to external stimuli are of widespread interest in biomedical science. Thermal-responsive shape memory polymers, a class of intelligent materials that can be fixed at a temporary shape below their transition temperature (T(trans)) and thermally triggered to resume their original shapes…

Polymer composites and self-healingMarine Biology and Environmental ChemistrySilicone and Siloxane Chemistry

Preparation of High‐Performance Conductive Polymer Fibers through Morphological Control of Networks Formed by Nanofillers

Hua Deng、Tetyana Skipa、Emiliano Bilotti 等 9 位作者2010-04-07Advanced Functional Materials

Abstract A general method is described to prepare high‐performance conductive polymer fibers or tapes. In this method, bicomponent tapes/fibers containing two layers of conductive polymer composites (CPCs) filled with multiwall carbon nanotubes (MWNT) or carbon black (CB) based on a lower‐melting‐temperature polymer a…

Carbon Nanotubes in CompositesAdvanced Sensor and Energy Harvesting MaterialsConducting polymers and applications

Auger Electron Spectroscopy: A Rational Method for Determining Thickness of Graphene Films

Mingsheng Xu、Daisuke Fujita、Jian-Hua Gao 等 4 位作者2010-04-07ACS Nano

We report the determination of the thickness of graphene layers by Auger electron spectroscopy (AES). We measure AES spectra of graphenes with different numbers of layers. The AES spectroscopy shows distinct spectrum shape, intensity, and energy characteristics with an increasing number of graphene layers. We also cal…

Graphene research and applicationsElectron and X-Ray Spectroscopy TechniquesSurface and Thin Film Phenomena

Bright Three‐Photon Luminescence from Gold/Silver Alloyed Nanostructures for Bioimaging with Negligible Photothermal Toxicity

Ling Tong、Claire M. Cobley、Jingyi Chen 等 5 位作者2010-04-07Angewandte Chemie International Edition

Au/Ag alloyed nanostructures exhibit a bright three-photon luminescence (3PL; see picture, left) upon excitation by a femtosecond laser at 1290 nm, with an intensity level one order of magnitude higher than pure Au or Ag nanoparticles. As the excitation is outside the range of plasmon resonance, 3PL enables bioimaging…

Gold and Silver Nanoparticles Synthesis and ApplicationsNanoplatforms for cancer theranosticsNanocluster Synthesis and Applications

Electrical Behavior of Phase-Change Memory Cells Based on GeTe

L. Perniola、Véronique Sousa、A. Fantini 等 29 位作者2010-04-07IEEE Electron Device Letters

In this letter, we present a study on the electrical behavior of phase-change memories (PCMs) based on a GeTe active material. GeTe PCMs show, first, extremely rapid SET operation (yielding a gain of more than one decade in energy per bit with respect to standard GST PCMs), second, robust cycling, up to 1 × 105, with…

Advanced Memory and Neural ComputingChalcogenide Semiconductor Thin FilmsPhase-change materials and chalcogenides

Experimental study of the behaviour of mini-charge underwater explosion bubbles near different boundaries

C.F. Hung、J. J. HWANGFU2010-04-07Journal of Fluid Mechanics

This work experimentally studies the behaviour of underwater explosion bubbles near different boundaries. The results are compared with theoretical and experimental data on cavitation bubbles. Although explosion and cavitation bubbles behave similarly on a macroscopic level, there are still some differences, most of w…

Ultrasound and Cavitation PhenomenaNuclear Physics and Applications

Indium-Gallium Segregation in CuIn$_{x}$Ga$_{1-x}$Se$_2$: An ab initio based Monte Carlo Study

Christian D. R. Ludwig、Thomas Gruhn、Claudia Felser 等 6 位作者2010-04-07arXiv

Thin-film solar cells with CuIn$_x$Ga$_{1-x}$Se$_2$ (CIGS) absorber are still far below their efficiency limit, although lab cells reach already 19.9%. One important aspect is the homogeneity of the alloy. Large-scale simulations combining Monte Carlo and density functional calculations show that two phases coexist in…

cond-mat.dis-nnMaterials Sciencephysics.comp-ph

Microbial Synthesis of Multishaped Gold Nanostructures

Sujoy K. Das、Akhil R. Das、Arun K. Guha2010-04-07Small

The development of methodologies for the synthesis of nanoparticles of well-defined size and shape is a challenging one and constitutes an important area of research in nanotechnology. This Full Paper describes the controlled synthesis of multishaped gold nanoparticles at room temperature utilizing a simple, green che…

Nanoparticles: synthesis and applicationsGold and Silver Nanoparticles Synthesis and ApplicationsAdvanced Nanomaterials in Catalysis

Controlled Assembly of Biodegradable Plasmonic Nanoclusters for Near-Infrared Imaging and Therapeutic Applications

Jasmine M. Tam、Justina Tam、Avinash Murthy 等 8 位作者2010-04-07ACS Nano

Metal nanoparticles with surface plasmon resonance (SPR) in the near-infrared region (NIR) are of great interest for imaging and therapy. Presently, gold nanoparticles with NIR absorbance are typically larger than 50 nm, above the threshold size of approximately 5 nm required for efficient renal clearance. As these na…

Gold and Silver Nanoparticles Synthesis and ApplicationsNanocluster Synthesis and ApplicationsAdvanced Nanomaterials in Catalysis

High-Yield Synthesis of Monodisperse Dumbbell-Shaped Polymer Nanoparticles

Jin Gyu Park、Jason D. Forster、Eric R. Dufresne2010-04-07Journal of the American Chemical Society

We describe a method for producing highly monodisperse dumbbell-shaped polymer nanoparticles with dimensions on the order of a few hundred nanometers in extremely high yields. Our technique is based on seeded polymerization, where suspended core-shell particles (linear polystyrene core with polystyrene-co-trimethoxysi…

Advanced Polymer Synthesis and CharacterizationSurfactants and Colloidal SystemsPickering emulsions and particle stabilization

Tuning the Emission of CdSe Quantum Dots by Controlled Trap Enhancement

David R. Baker、Prashant V. Kamat2010-04-07Langmuir

Ligand exchange with 3-mercaptopropionic acid (MPA) has been successfully used to tune the emission intensity of trioctylphosphineoxide/dodecylamine-capped CdSe quantum dots. Addition of 3-mercaptopropionic acid (MPA) to CdSe quantum dot suspension enhances the deep trap emission with concurrent quenching of the band…

Quantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin FilmsMolecular Junctions and Nanostructures

Magnetic‐Field‐Assisted Electrospinning of Aligned Straight and Wavy Polymeric Nanofibers

Yaqing Liu、Xinping Zhang、Younan Xia 等 4 位作者2010-04-07Advanced Materials

Aligned straight and wavy fibers of biodegradable poly(D,L-lactic-co-glycolic acid) (PLGA) are fabricated using a magnetic-field-assisted electrospinning method. PLGA fibrous matrices prepared by this method can guide the growth of pluripotent murine mesenchymal stem cells. While the stem cells on the randomly oriente…

Advanced Sensor and Energy Harvesting MaterialsElectrospun Nanofibers in Biomedical ApplicationsTissue Engineering and Regenerative Medicine

Suspended Graphene Sensors with Improved Signal and Reduced Noise

Zengguang Cheng、Qiang Li、Zhongjun Li 等 5 位作者2010-04-07OpenAlex

We report enhanced performance of suspended graphene field effect transistors (Gra-FETs) as sensors in aqueous solutions. Etching of the silicon oxide (SiO(2)) substrate underneath graphene was carried out in situ during electrical measurements of devices, which enabled systematic comparison of transport properties fo…

Graphene research and applicationsAdvanced biosensing and bioanalysis techniquesMolecular Junctions and Nanostructures

Local polarization dynamics in ferroelectric materials

Sergei V. Kalinin、Anna N. Morozovska、Long‐Qing Chen 等 4 位作者2010-04-07OpenAlex

Ferroelectrics and multiferroics have recently emerged as perspective materials for information technology and data storage applications. The combination of extremely narrow domain wall width and the capability to manipulate polarization by electric field opens the pathway toward ultrahigh (>10 TBit inch −2 ) storage…

Ferroelectric and Piezoelectric MaterialsMultiferroics and related materialsAcoustic Wave Resonator Technologies

Emergence of magnetism in graphene materials and nanostructures

Oleg V Yazyev2010-04-07arXiv

Magnetic materials and nanostructures based on carbon offer unique opportunities for future technological applications such as spintronics. This article reviews graphene-derived systems in which magnetic correlations emerge as a result of reduced dimensions, disorder and other possible scenarios. In particular, zero-d…

Graphene research and applications2D Materials and ApplicationsAdvanced Physical and Chemical Molecular Interactions

Comparative study between erbium and erbium oxide-doped diamondlike carbon films deposited by pulsed laser deposition technique

Y. M. Foong、J. Hsieh、Xijun Li 等 4 位作者2010-04-06Journal of Vacuum Science & Technology A Vacuum Surfaces and Films

Diamondlike carbon (DLC) films doped with the same fraction of erbium and erbium oxide were prepared by using 248 nm KrF pulsed laser deposition system. The effects of erbium and erbium oxide on the surface morphology, microstructures, and mechanical property of DLC were investigated. Transmission electron microscopy…

Metal and Thin Film MechanicsDiamond and Carbon-based Materials ResearchForce Microscopy Techniques and Applications

Cathodic electrolytic deposition of ZnO on mild steel

C.N. Panagopoulos、M.G. Tsoutsouva2010-04-06Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control

The present paper deals with the deposition and characterisation of zinc oxide coatings on mild steel substrates by cathodic electrolytic deposition via a 0·1M zinc nitrate aqueous solution. The influence of the deposition parameters, such as applied cathodic potential and deposition time, on the growth of oxide coati…

ZnO doping and propertiesCorrosion Behavior and InhibitionElectrodeposition and Electroless Coatings