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Hierarchical Carbon Foams with Independently Tunable Mesopore and Macropore Size Distributions

Adam F. Gross、Andrew P. Nowak2010-05-21Langmuir

Hierarchical carbon foams with independently tunable mesopore and macropore size distributions were formed in a high internal phase emulsion (HIPE) template. The HIPE consists of an internal oil phase that controls the macropore dimensions and an aqueous resorcinol-formaldehyde precursor solution external phase that d…

Supercapacitor Materials and FabricationMesoporous Materials and CatalysisPickering emulsions and particle stabilization

Radiation Technology for Polymers

Jiri George Drobny2010-05-21OpenAlex

The first edition of Radiation Technology for Polymers set the standard as a valuable, time-saving resource offering systematic fundamental information about industrial radiation technologies. Raising the bar even further, Radiation Technology for Polymers, Second Edition explores emerging applications of ultraviolet…

Radiation Effects and DosimetryPolymer Nanocomposite Synthesis and IrradiationPhotopolymerization techniques and applications

Self-Assembly of Carbon Nanotubes via Ethanol Chemical Vapor Deposition for the Synthesis of Gas Chromatography Columns

Chaudhery Mustansar Hussain、Chutarat Saridara、Somenath Mitra2010-05-21Analytical Chemistry

The synthesis of the gas chromatography stationary phase by molecular self-assembly of carbon nanotubes (CNTs) via a novel ethanol chemical vapor deposition process is presented. A major advantage is that ethanol was found to be an excellent carbon source that generated highly pure multiwalled carbon nanotubes with ve…

Carbon Nanotubes in CompositesAnalytical Chemistry and ChromatographyNanopore and Nanochannel Transport Studies

Graphene Dirac fermions in one-dimensional inhomogeneous field profiles: Transforming magnetic to electric field

Liang Z. Tan、Cheol-Hwan Park、Steven G. Louie2010-05-21Physical Review B

We show that the low-energy electronic structure of graphene under a one-dimensional inhomogeneous magnetic field can be mapped into that of graphene under an electric field or vice versa. As a direct application of this transformation, we find that the carrier velocity in graphene is isotropically reduced under magne…

Topological Materials and PhenomenaQuantum and electron transport phenomenaGraphene research and applications

Structural origin of dynamic heterogeneity in three-dimensional colloidal glass formers and its link to crystal nucleation

Takeshi Kawasaki、Hajime Tanaka2010-05-21Journal of Physics Condensed Matter

The physical understanding of glass transition remains a major challenge of physics and materials science. Among various glass-forming liquids, a colloidal liquid interacting with hard-core repulsion is now regarded as one of the most ideal model systems. Here we study the structure and dynamics of three-dimensional p…

Material Dynamics and PropertiesLiquid Crystal Research AdvancementsPlant and animal studies

Plasma techniques for nanostructured carbon materials synthesis. A case study: carbon nanowall growth by low pressure expanding RF plasma

Sorin Vizireanu、Silviu Daniel Stoica、C. Luculescu 等 6 位作者2010-05-21Plasma Sources Science and Technology

A short description of approaches for carbon nanostructures synthesis is made and the advantages of using plasma during the growth are presented. As a particular example of a plasma based technique we detail the process of downstream carbon nanowall (CNW) synthesis by a radiofrequency expanding plasma beam. The techni…

Carbon Nanotubes in CompositesDiamond and Carbon-based Materials ResearchGraphene research and applications

Well-localized edge states in two-dimensional topological insulators: ultrathin Bi films

M. Wada、S. Murakami、F. Freimuth 等 4 位作者2010-05-21arXiv

We theoretically study the generic behavior of the penetration depth of the edge states in two-dimensional quantum spin Hall systems. We found that the momentum-space width of the edge-state dispersion scales with the inverse of the penetration depth. As an example of well-localized edge states, we take the Bi(111) ul…

Mesoscale and Nanoscale PhysicsMaterials Science

LDA+DMFTspectral functions and effective electron mass enhancement in the superconductor LaFePO

S. L. Skornyakov、N. A. Skorikov、A. V. Lukoyanov 等 5 位作者2010-05-21Physical Review B

In this paper we report $\text{LDA}+\text{DMFT}$ results (method combining local-density approximation with dynamical mean-field theory) for spectral properties of superconductor LaFePO. Calculated $\mathbf{k}$-resolved spectral functions reproduce recent angle-resolved photoemission spectroscopy data [D. H. Lu et al.…

Iron-based superconductors researchCorporate Taxation and AvoidanceRare-earth and actinide compounds

phenix.model_vs_data: a high-level tool for the calculation of crystallographic model and data statistics

Pavel V. Afonine、Ralf W. Grosse‐Kunstleve、Vincent B. Chen 等 10 位作者2010-05-21Journal of Applied Crystallography

phenix.model_vs_data is a high-level command-line tool for the computation of crystallographic model and data statistics, and the evaluation of the fit of the model to data. Analysis of all Protein Data Bank structures that have experimental data available shows that in most cases the reported statistics, in particula…

Protein Structure and DynamicsEnzyme Structure and FunctionComputational Drug Discovery Methods

Charge distribution near bulk oxygen vacancies in cerium oxides

Elvis Shoko、M. F. Smith、Ross H. McKenzie2010-05-21Journal of Physics Condensed Matter

Understanding the electronic charge distribution around oxygen vacancies in transition metal and rare earth oxides is a scientific challenge of considerable technological importance. We show how significant information about the charge distribution around vacancies in cerium oxide can be gained from a study of high re…

Magnetic and transport properties of perovskites and related materialsCatalytic Processes in Materials ScienceAdvanced Condensed Matter Physics

Alignment of defect levels and band edges through hybrid functionals: Effect of screening in the exchange term

Hannu‐Pekka Komsa、Peter Broqvist、Alfredo Pasquarello2010-05-21Physical Review B

We investigate how various treatments of exact exchange affect defect charge transition levels and band edges in hybrid functional schemes for a variety of systems. We distinguish the effects of long-range vs short-range exchange and of local vs nonlocal exchange. This is achieved by the consideration of a set of four…

Solid-state spectroscopy and crystallographyAcoustic Wave Resonator TechnologiesTransition Metal Oxide Nanomaterials

Design techniques for superposition of acoustic bandgaps using fractal geometries

S. Castiñeira-Ibáñez、V. Romero-García、J. V. Sánchez-Pérez 等 4 位作者2010-05-21arXiv

Research into properties of heterogeneous artificial materials, consisting of arrangements of rigid scatterers embedded in a medium with different elastic properties, has been intense throughout last two decades. The capability to prevent the transmission of waves in predetermined bands of frequencies -called bandgaps…

Materials Sciencephysics.flu-dyn

Distribution of doped Mn at the Σ3 (112) grain boundary in Ge

W. Wang、S. L. Zhang、Z. X. Tian 等 4 位作者2010-05-21arXiv

Using first-principles density functional theory method, we have investigated the distribution and magnetism of doped Mn atoms in the vicinity of the 3 (112) grain boundary in Ge. We find that at low concentration, the substitutional sites are energetically favorable over the interstitial ones for Mn. The binding ener…

Materials Science

Continuous-flow, atmospheric-pressure microplasmas: a versatile source for metal nanoparticle synthesis in the gas or liquid phase

Wei‐Hung Chiang、Carolyn Richmonds、R. Mohan Sankaran2010-05-21Plasma Sources Science and Technology

Continuous-flow, atmospheric-pressure microplamas are a unique class of plasmas that are highly suitable for emerging nanomaterials applications. Here, we present two schemes for the preparation of metal nanoparticles based on these plasma sources. Nanoparticles are synthesized in the gas phase by non-thermal dissocia…

Electrohydrodynamics and Fluid DynamicsPlasma Applications and DiagnosticsGold and Silver Nanoparticles Synthesis and Applications

Doping Asymmetry Problem in ZnO: Current Status and Outlook

V. Avrutin、D. J. Silversmith、H. Morkoç̌2010-05-21Proceedings of the IEEE

ZnO has gained considerable interest recently as a promising material for a variety of applications. To a large extent, the renewed interest in ZnO is fuelled by its wide direct band gap (3.3 eV at room temperature) and large exciton binding energy (60 meV) making this material, when alloyed with, e.g., Cd and Mg, esp…

ZnO doping and propertiesChalcogenide Semiconductor Thin FilmsCopper-based nanomaterials and applications

A Controllable Self‐Assembly Method for Large‐Scale Synthesis of Graphene Sponges and Free‐Standing Graphene Films

Liu Fei、Tae Seok Seo2010-05-21Advanced Functional Materials

Abstract A simple method to prepare large‐scale graphene sponges and free‐standing graphene films using a speed vacuum concentrator is presented. During the centrifugal evaporation process, the graphene oxide (GO) sheets in the aqueous suspension are assembled to generate network‐linked GO sponges or a series of multi…

Graphene research and applicationsCarbon and Quantum Dots ApplicationsGraphene and Nanomaterials Applications

Domain Engineering of Lead‐Free Li‐Modified (K,Na)NbO3 Polycrystals with Highly Enhanced Piezoelectricity

Ke Wang、Jing‐Feng Li2010-05-21OpenAlex

Abstract Aging and re‐poling induced enhancement of piezoelectricity are found in (K,Na)NbO 3 (KNN)‐based lead‐free piezoelectric ceramics. For a compositionally optimized Li‐doped composition, its piezoelectric coefficient d 33 can be increased up to 324 pC N −1 even from a considerably high value (190 pC N −1 ) by m…

Microwave Dielectric Ceramics SynthesisAcoustic Wave Resonator TechnologiesFerroelectric and Piezoelectric Materials

Nanofiber Assembly by Rotary Jet-Spinning

Mohammad Reza Badrossamay、Holly A. McIlwee、Josue A. Goss 等 4 位作者2010-05-21OpenAlex

High-voltage electrical fields and low production rate limit electrospinning, the electrical charging of polymer liquids, as a means of nanofiber fabrication. Here, we show a facile method of fabrication of aligned three-dimensional nanofiber structures by utilizing high-speed, rotating polymer solution jets to extrud…

Tissue Engineering and Regenerative MedicineElectrohydrodynamics and Fluid DynamicsElectrospun Nanofibers in Biomedical Applications