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Effective Conductivities of Thin-Interphase Composites

Bacim Alali、Graeme W. Milton2013-08-15arXiv

A method is presented for approximating the effective conductivity of composite media with thin interphase regions, which is exact to first order in the interphase thickness. The approximations are computationally efficient in the sense the fields need to be computed only in a reference composite in which the interpha…

Materials Sciencemath.AP

Single Dirac-Cone State and Quantum Hall Effects in Honeycomb Structure

Motohiko Ezawa2013-08-15arXiv

A honeycomb lattice system has four types of Dirac electrons corresponding to the spin and valley degrees of freedom. We consider a state that contains only one type of massless electrons and three types of massive ones, which we call the single Dirac-cone state. We analyze quantum Hall (QH) effects in this state. We…

Mesoscale and Nanoscale PhysicsMaterials Science

Voltage-induced strain control of the magnetic anisotropy in a Ni thin film on flexible substrate

F. Zighem、D. Faurie、Silvana Mercone 等 5 位作者2013-08-15Journal of Applied Physics

Voltage-induced magnetic anisotropy has been quantitatively studied in polycrystalline Ni thin film deposited on flexible substrate using microstrip ferromagnetic resonance. This anisotropy is induced by a piezoelectric actuator on which the film/substrate system was glued. In our work, the control of the anisotropy t…

Magnetic Properties and ApplicationsShape Memory Alloy TransformationsMultiferroics and related materials

Canonical magnetic insulators with isotropic magnetoelectric coupling

Sinisa Coh、David Vanderbilt2013-08-15arXiv

We have performed an exhaustive representation-theory-based search for the simplest structures allowing isotropic magnetoelectric coupling. We find 30 such structures, all sharing a common pattern of atomic displacements in the direction of atomic magnetic moments. We focus on one of these 30 canonical structures and…

Materials Science

Rotation-induced grain growth and stagnation in phase-field crystal models

Mathias Bjerre、Jens M. Tarp、Luiza Angheluta 等 4 位作者2013-08-15Physical Review E

We consider grain growth and stagnation in polycrystalline microstructures. From the phase-field crystal modeling of the coarsening dynamics, we identify a transition from a grain-growth stagnation upon deep quenching below the melting temperature T(m) to a continuous coarsening at shallower quenching near T(m). The g…

Solidification and crystal growth phenomenananoparticles nucleation surface interactionsAluminum Alloy Microstructure Properties

Structural and optical investigations of the iron-chalcogenide superconductor Fe$_{1.03}$Se$_{0.5}$Te$_{0.5}$ under high pressure

Pallavi S. Malavi、S. Karmakar、N. N. Patel 等 4 位作者2013-08-15arXiv

Iron-chalcogenide superconductor Fe$_{1.03}$Se$_{0.5}$Te$_{0.5}$ has been investigated under high pressure using synchrotron based x-ray diffraction and mid-infrared reflectance measurements at room temperature. Pressure dependence of the superconducting transition temperature (T$_c$) of the same sample has been deter…

SuperconductivityMaterials Science

Redox reactions with empirical potentials: Atomistic battery discharge simulations

Wolf B. Dapp、Martin H. Müser2013-08-15arXiv

Batteries are pivotal components in overcoming some of today's greatest technological challenges. Yet to date there is no self-consistent atomistic description of a complete battery. We take first steps toward modeling of a battery as a whole microscopically. Our focus lies on phenomena occurring at the electrode-elec…

Materials ScienceChemical PhysicsMesoscale and Nanoscale Physics

How Channel Segregates Originates: The Flow of Accumulated Impurity Clusters in Solidifying Steels

Dianzhong Li、Xing-Qiu Chen、Paixian Fu 等 8 位作者2013-08-15arXiv

The phenomenon, channel segregates (CS) as a result of gravity-driven flow due to density contrast occurred in the solid-liquid mushy zones1during solidification, often causes the severe destruction of homogeneity and even some fatal damages. Investigation on its mechanism sheds light on the understanding and controll…

Materials Science

Magnetooptical properties of (Ga,Fe)N layers

J. Papierska、J. -G. Rousset、W. Pacuski 等 16 位作者2013-08-15arXiv

Magnetooptical properties of (Ga,Mn)N layers containing various concentrations of Fe-rich nanocrystals embedded in paramagnetic (Ga,Fe)N layers are reported. Previous studies of such samples demonstrated that magnetization consists of a paramagnetic contribution due to substitutional diluted Fe ions as well as of ferr…

Materials Science

Topological crystalline insulator states in Pb(1-x)Sn(x)Se

P. Dziawa、B. J. Kowalski、K. Dybko 等 12 位作者2013-08-15arXiv

Topological insulators are a novel class of quantum materials in which time-reversal symmetry, relativistic (spin-orbit) effects and an inverted band structure result in electronic metallic states on the surfaces of bulk crystals. These helical states exhibit a Dirac-like energy dispersion across the bulk bandgap, and…

Materials Science

Nanofunctional gallium oxide (Ga 2 O 3 ) nanowires/nanostructures and their applications in nanodevices

Sudheer Kumar、Rakesh Kumar Singh2013-08-15physica status solidi (RRL) - Rapid Research Letters

Abstract magnified image A brief review on beta gallium oxide (β‐Ga 2 O 3 ) nanowires (NWs) and nanostructures (NS) is presented in this article. β‐Ga 2 O 3 is a wide‐bandgap ( E g ∼ 4.9 eV) semiconductor and can be doped with n‐ and p‐type dopants, which can lead to applications in many functional devices. Here, we w…

Advanced Photocatalysis TechniquesZnO doping and propertiesGa2O3 and related materials

Trap and Transfer. Two-Step Hole Injection Across the Sb2S3/CuSCN Interface in Solid-State Solar Cells

Jeffrey A. Christians、Prashant V. Kamat2013-08-15ACS Nano

In solid-state semiconductor-sensitized solar cells, commonly known as extremely thin absorber (ETA) or solid-state quantum-dot-sensitized solar cells (QDSCs), transfer of photogenerated holes from the absorber species to the p-type hole conductor plays a critical role in the charge separation process. Using Sb2S3 (ab…

Chalcogenide Semiconductor Thin FilmsQuantum Dots Synthesis And PropertiesPerovskite Materials and Applications

Multidentate Zwitterionic Ligands Provide Compact and Highly Biocompatible Quantum Dots

Naiqian Zhan、Goutam Palui、Malak Safi 等 5 位作者2013-08-15Journal of the American Chemical Society

Hydrophilic functional semiconductor nanocrystals that are also compact provide greatly promising platforms for use in bioinspired applications and are thus highly needed. To address this, we designed a set of metal coordinating ligands where we combined two lipoic acid groups, bis(LA)-ZW, (as a multicoordinating anch…

Advanced biosensing and bioanalysis techniquesNanocluster Synthesis and ApplicationsQuantum Dots Synthesis And Properties

Atomically Thin Tin Dioxide Sheets for Efficient Catalytic Oxidation of Carbon Monoxide

Yongfu Sun、Fengcai Lei、Shan Gao 等 6 位作者2013-08-15Angewandte Chemie International Edition

The thinner the better: SnO2 sheets that are five atomic layers thick are an efficient catalyst for the oxidation of CO. These sheets, which have 40% surface atom occupancy and are fabricated by a scalable ethylenediamine-assisted pathway, show remarkably improved catalytic performances compared to other SnO2 species,…

Gas Sensing Nanomaterials and SensorsCatalysis and Oxidation ReactionsCatalytic Processes in Materials Science

Intrinsically Stretchable Supercapacitors Composed of Polypyrrole Electrodes and Highly Stretchable Gel Electrolyte

Chen Zhao、Caiyun Wang、Zhilian Yue 等 5 位作者2013-08-15ACS Applied Materials & Interfaces

There has been an emerging interest in stretchable power sources compatible with flexible/wearable electronics. Such power sources must be able to withstand large mechanical strains and still maintain function. Here we report a highly stretchable H3PO4-poly(vinyl alcohol) (PVA) polymer electrolyte obtained by optimizi…

Conducting polymers and applicationsAdvanced Sensor and Energy Harvesting MaterialsSupercapacitor Materials and Fabrication

Silicon Quantum Dots for Biological Applications

Shanmugavel Chinnathambi、Song Chen、Singaravelu Ganesan 等 4 位作者2013-08-15Advanced Healthcare Materials

Semiconductor nanoparticles (or quantum dots, QDs) exhibit unique optical and electronic properties such as size-controlled fluorescence, high quantum yields, and stability against photobleaching. These properties allow QDs to be used as optical labels for multiplexed imaging and in drug delivery detection systems. Lu…

Quantum Dots Synthesis And PropertiesSilicon Nanostructures and PhotoluminescenceAdvanced biosensing and bioanalysis techniques

Arsenic Removal from Contaminated Water Using Three-Dimensional Graphene-Carbon Nanotube-Iron Oxide Nanostructures

Vadahanambi Sridhar、Sang-Heon Lee、Wonjong Kim 等 4 位作者2013-08-15Environmental Science & Technology

We report a highly versatile and one-pot microwave route to the mass production of three-dimensional graphene-carbon nanotube-iron oxide nanostructures for the efficient removal of arsenic from contaminated water. The unique three-dimensional nanostructure shows that carbon nanotubes are vertically standing on graphen…

Graphene research and applicationsGraphene and Nanomaterials ApplicationsNanopore and Nanochannel Transport Studies

A Novel Method for Applying Reduced Graphene Oxide Directly to Electronic Textiles from Yarns to Fabrics

Yong Ju Yun、Won G. Hong、Wan‐Joong Kim 等 5 位作者2013-08-15Advanced Materials

Conductive, flexible, and durable reduced RGO textiles with a facile preparation method are presented. BSA proteins serve as universal adhesives for improving the adsorption of GO onto any textile, irrespective of the materials and the surface conditions. Using this method, we successfully prepared various RGO textile…

Advanced Sensor and Energy Harvesting MaterialsGraphene and Nanomaterials ApplicationsGraphene research and applications

A Rapid and Efficient Self‐Healing Thermo‐Reversible Elastomer Crosslinked with Graphene Oxide

Chao Wang、Nan Liu、Ranulfo Allen 等 8 位作者2013-08-15Advanced Materials

A self-healing thermo-reversible elastomer is synthesized by cross-linking a hydrogen bonding polymer network with chemically-modified graphene oxide. This nanocomposite allows for both rapid and efficient self-healing (in only several minutes) at room temperature, without the need for any external stimuli (e.g., heat…

Advanced Sensor and Energy Harvesting MaterialsPolymer composites and self-healingElectrospun Nanofibers in Biomedical Applications

Highly efficient and robust cathode materials for low-temperature solid oxide fuel cells: PrBa0.5Sr0.5Co2−xFexO5+δ

Sihyuk Choi、Seonyoung Yoo、Jiyoun Kim 等 12 位作者2013-08-15OpenAlex

Solid oxide fuel cells (SOFC) are the cleanest, most efficient, and cost-effective option for direct conversion to electricity of a wide variety of fuels. While significant progress has been made in anode materials with enhanced tolerance to coking and contaminant poisoning, cathodic polarization still contributes con…

Electronic and Structural Properties of OxidesAdvancements in Solid Oxide Fuel CellsMagnetic and transport properties of perovskites and related materials