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Space-coiling metamaterials with double negativity and conical dispersion

Zixian Liang、Tianhua Feng、Shukin Lok 等 10 位作者2013-04-08Scientific Reports

Metamaterials are effectively homogeneous materials that display extraordinary dispersion. Negative index metamaterials, zero index metamaterials and extremely anisotropic metamaterials are just a few examples. Instead of using locally resonating elements that may cause undesirable absorption, there are huge efforts t…

Advanced Antenna and Metasurface TechnologiesMetamaterials and Metasurfaces ApplicationsAcoustic Wave Phenomena Research

Large‐Area Flexible Core–Shell Graphene/Porous Carbon Woven Fabric Films for Fiber Supercapacitor Electrodes

Xiao Li、Xiaobei Zang、Zhen Li 等 13 位作者2013-04-08Advanced Functional Materials

Abstract New porous materials are of great importance in many technological applications. Here, the direct synthesis of multi‐layer graphene and porous carbon woven composite films by chemical vapor deposition on Ni gauze templates is reported. The composite films integrate the dual advantages of graphene and porous c…

Graphene research and applicationsMXene and MAX Phase MaterialsSupercapacitor Materials and Fabrication

Depth-profiling X-ray photoelectron spectroscopy (XPS) analysis of interlayer diffusion in polyelectrolyte multilayers

Jonathan B. Gilbert、Michael F. Rubner、Robert E. Cohen2013-04-08Proceedings of the National Academy of Sciences

Functional organic thin films often demand precise control over the nanometer-level structure. Interlayer diffusion of materials may destroy this precise structure; therefore, a better understanding of when interlayer diffusion occurs and how to control it is needed. X-ray photoelectron spectroscopy paired with C60(+)…

Molecular Junctions and NanostructuresPolymer Surface Interaction StudiesIon-surface interactions and analysis

Monolayer semiconducting transition metal dichalcogenide alloys: Stability and band bowing

Jun Kang、Sefaattin Tongay、Jingbo Li 等 4 位作者2013-04-08Journal of Applied Physics

The stability and band bowing effects of two-dimensional transition metal dichalcogenide alloys MX2(1−x)X′2x (M = Mo, W, and X, X′ = S, Se, Te) are investigated by employing the cluster expansion method and the special quasi-random structure approach. It is shown that for (S, Se) alloys, there exist stable ordered all…

Graphene research and applicationsMXene and MAX Phase Materials2D Materials and Applications

High mobility and high on/off ratio field-effect transistors based on chemical vapor deposited single-crystal MoS2 grains

Wei Wu、Debtanu De、Su-Chi Chang 等 7 位作者2013-04-08Applied Physics Letters

We report the electrical characteristics of field-effect transistors (FETs) with single-crystal molybdenum disulfide (MoS2) channels synthesized by chemical vapor deposition (CVD). For a bilayer MoS2 FET, the field-effect mobility is ∼17 cm2 V−1 s−1 and the on/off current ratio is ∼108, which are much higher than thos…

2D Materials and ApplicationsMXene and MAX Phase MaterialsFerroelectric and Negative Capacitance Devices

Mechanism of Frost Formation on Lubricant-Impregnated Surfaces

Konrad Rykaczewski、Sushant Anand、Srinivas Bengaluru Subramanyam 等 4 位作者2013-04-08OpenAlex

Frost formation is a major problem affecting a variety of industries including transportation, power generation, construction, and agriculture. Currently used active chemical, thermal, and mechanical techniques of ice removal are time-consuming and costly. The use of nanotextured coatings infused with perfluorinated o…

Surface Modification and SuperhydrophobicityIcing and De-icing TechnologiesAdhesion, Friction, and Surface Interactions

Computational discovery of single-layer III-V materials

Houlong Zhuang、Arunima K. Singh、Richard G. Hennig2013-04-08OpenAlex

Single-layer materials open up tremendous opportunities for nanoelectronic devices. Using a first-principles design approach we identify a previously unrecognized family of single-layer III-V materials. We determine their energetic and dynamical stability, identify a surprising reconstruction, and calculate their elec…

Semiconductor materials and devicesNanowire Synthesis and Applications2D Materials and Applications

On the role of surface diffusion in determining the shape or morphology of noble-metal nanocrystals

Xiaohu Xia、Shuifen Xie、Maochang Liu 等 8 位作者2013-04-08OpenAlex

Controlling the shape or morphology of metal nanocrystals is central to the realization of their many applications in catalysis, plasmonics, and electronics. In one of the approaches, the metal nanocrystals are grown from seeds of certain crystallinity through the addition of atomic species. In this case, manipulating…

Gold and Silver Nanoparticles Synthesis and ApplicationsCopper-based nanomaterials and applicationsnanoparticles nucleation surface interactions

Quantification of Feeding Effects of Spot Feeding Ductile Iron Castings made in Vertically Parted Moulds

Nikolaj Kjelgaard Vedel-Smith、Niels Skat Tiedje、J. Sällström 等 4 位作者2013-04-07OpenAlex

In vertically parted molds it is traditionally difficult to feed heavy sections that cannot be reached by traditional side/top feeders or other conventional methods. This project aims at quantifying the effects of using molded-in ram-up spot feeders as a means of feeding isolated sections in castings made in verticall…

Metal Alloys Wear and PropertiesMaterials Engineering and ProcessingMetallurgy and Material Forming

Intrinsic Charge Separation and Tunable Electronic Band Gap of Armchair Graphene Nanoribbons Encapsulated in a Double-Walled Carbon Nanotube

Liangzhi Kou、Chun Tang、Thomas Frauenheim 等 4 位作者2013-04-07The Journal of Physical Chemistry Letters

Recent synthesis of nanocomposite structures of graphene nanoribbons (GNRs) encapsulated in a carbon nanotube (CNT) has opened a new avenue for exploring new functionalities for applications in nanotechnology. This new class of carbon nanocomposites is expected to possess electronic properties beyond those offered by…

Carbon Nanotubes in CompositesAdvancements in Battery MaterialsGraphene research and applications

Tissue Factor Activity and ECM-Related Gene Expression in Human Aortic Endothelial Cells Grown on Electrospun Biohybrid Scaffolds

Jingjia Han、Jonathan A. Gerstenhaber、Philip Lazarovici 等 4 位作者2013-04-07Biomacromolecules

All blood vessels are lined with a quiescent endothelium, which aids in regulating regular blood flow and avoiding thrombus formation. Current attempts at replacing diseased blood vessels frequently fail due to the intrinsic thrombogenicity of the materials used as vascular grafts. In extending our previous work where…

Calpain Protease Function and RegulationSignaling Pathways in DiseaseElectrospun Nanofibers in Biomedical Applications

“Green” Synthesized and Coated Nanosilver Alters the Membrane Permeability of Barrier (Intestinal, Brain Endothelial) Cells and Stimulates Oxidative Stress Pathways in Neurons

Babita Baruwati、Steven O. Simmons、Rajendar S. Varma 等 4 位作者2013-04-07ACS Sustainable Chemistry & Engineering

Nanosilver’s (nanoAg) use in medical applications and consumer products is increasing. Because of this, its “green” synthesis and surface modification with beneficial coatings are desirable. Given nanoAg’s potential exposure routes (e.g., dermal, intestinal, pulmonary), questions on its potential to move through these…

Nanoparticles: synthesis and applicationsAdvanced Nanomaterials in CatalysisGraphene and Nanomaterials Applications

Piezoelectric Effects of Applied Electric Fields on Hydrogen-Bond Interactions: First-Principles Electronic Structure Investigation of Weak Electrostatic Interactions

Keith Werling、Geoffrey Hutchison、Daniel S. Lambrecht2013-04-07The Journal of Physical Chemistry Letters

The piezoelectric properties of 2-methyl-4-nitroaniline crystals were explored qualitatively and quantitatively using an electrostatically embedded many-body (EE-MB) expansion scheme for the correlation energies of a system of monomers within the crystal. The results demonstrate that hydrogen bonding is an inherently…

Acoustic Wave Resonator TechnologiesSolid-state spectroscopy and crystallographySpectroscopy and Quantum Chemical Studies

Photophysical Properties of Self-Assembled Multinuclear Platinum Metallacycles with Different Conformational Geometries

Junsheng Chen、Guang-Jiu Zhao、Timothy R. Cook 等 5 位作者2013-04-07Journal of the American Chemical Society

In this work, spectroscopic techniques and quantum chemistry calculations were used to investigate the photophysical properties of various multinuclear platinum complexes with different conformational geometries. This suite of complexes includes a Pt-pyridyl square, a Pt-carboxylate triangle, and a mixed Pt-pyridyl-ca…

Metal complexes synthesis and propertiesMagnetism in coordination complexesPorphyrin and Phthalocyanine Chemistry

Graphene MEMS: AFM Probe Performance Improvement

Cristina Martin‐Olmos、Haider I. Rasool、Bruce H. Weiller 等 4 位作者2013-04-07ACS Nano

We explore the feasibility of growing a continuous layer of graphene in prepatterned substrates, like an engineered silicon wafer, and we apply this as a mold for the fabrication of AFM probes. This fabrication method proves the fabrication of SU-8 devices coated with graphene in a full-wafer parallel technology and w…

Graphene research and applicationsNanowire Synthesis and ApplicationsForce Microscopy Techniques and Applications

Simulation of nanostructure-based high-efficiency solar cells: challenges, existing approaches and future directions

Urs Aeberhard2013-04-07arXiv

Many advanced concepts for high-efficiency photovoltaic devices exploit the peculiar optoelectronic properties of semiconductor nanostructures such as quantum wells, wires and dots. While the optics of such devices is only modestly affected due to the small size of the structures, the optical transitions and electroni…

Mesoscale and Nanoscale PhysicsMaterials Science

Spin-Valleytronics in Silicene: Quantum-Spin-Quantum-Anomalous Hall Insulators and Single-Valley Semimetals

Motohiko Ezawa2013-04-07arXiv

Valley-based electronics, known as valleytronics, is one of the keys to break through to a new stage of electronics. The valley degree of freedom is ubiquitous in the honeycomb lattice system. The honeycomb lattice structure of silicon called silicene is an fascinating playground of valleytronics. We investigate topol…

Materials ScienceMesoscale and Nanoscale Physics

Thermodynamic properties of a diluted Heisenberg ferromagnet with interaction anisotropy -- magnetocaloric point of view

Karol Szałowski、Tadeusz Balcerzak、Andrej Bobák2013-04-07arXiv

The thermodynamics of a site-diluted ferromagnetic Heisenberg model for spin $S=1/2$ with interaction anisotropy in spin space is investigated. The study is aimed at presenting the magnetocaloric properties of such a model, including the entropy and temperature changes in magnetization/demagnetization processes, gener…

Materials Sciencecond-mat.stat-mech

A simple thermodynamic description of the combined Einstein and elastic models

Tadeusz Balcerzak、Karol Szałowski、Michal Jaščur2013-04-07arXiv

Simple application of the Einstein model combined with the elastic description of solid state is developed. The frequency of quantum oscillators has been assumed as volume dependent and, furthermore, elastic energy terms of static character have been included to complete the description. Such an extension enables to c…

cond-mat.stat-mechMaterials Science

Carrier Mobility in Graphyne Should Be Even Larger than That in Graphene: A Theoretical Prediction

Jianming Chen、Jinyang Xi、Dong Wang 等 4 位作者2013-04-07OpenAlex

We show here that the carrier mobility in the novel sp-sp(2) hybridization planar 6,6,12-graphyne sheet should be even larger than that in the graphene sheet. Both graphyne and graphene exhibit a Dirac cone structure near the Fermi surface. However, due to the sp-sp(2) hybridization forming the triple bonds in graphyn…

Carbon Nanotubes in CompositesGraphene research and applicationsAdvancements in Battery Materials