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Multiple localized states and magnetic orderings in partially open zigzag carbon nanotube superlattices: An ab initio study

Bing Huang、Zuanyi Li、Young-Woo Son 等 6 位作者2010-08-24The Journal of Chemical Physics

Using ab initio calculations, we examine the electronic and magnetic properties of partially open (unzipped) zigzag carbon nanotube (CNT) superlattices. It is found that depending on their opening degree, these superlattices can exhibit multiple localized states around the Fermi energy. More importantly, some electron…

Topological Materials and PhenomenaGraphene research and applicationsCarbon Nanotubes in Composites

Photovoltaic effect for narrow-gap Mott insulators

Efstratios Manousakis2010-08-24arXiv

We discuss the photovoltaic effect at a p-n heterojunction, in which the illuminated side is a doped Mott insulator, using the simplest description of a Mott insulator within the Hubbard model. We find that the internal quantum efficiency of such a device, if we choose an appropriate narrow-gap Mott insulator, can be…

Materials ScienceStrongly Correlated Electrons

A study of the glass transition in the amorphous interlamellar phase of highly crystallized poly(ethylene terephthalate)

J. Sellarès、J. A. Diego、J. Belana2010-08-24Journal of Physics D Applied Physics

The glass transition of poly(ethylene terephthalate) (PET) crystallized for 4 h at temperatures between 413 and 453 K was studied. Secondary crystallization processes were monitored by differential scanning calorimetry and the glass transition of the remaining interlamellar amorphous phase was studied by thermally sti…

Polymer Nanocomposites and PropertiesMaterial Dynamics and PropertiesPolymer crystallization and properties

Fabrication of polyvinyl alcohol/gelatin nanofiber composites and evaluation of their material properties

Nguyen Thuy Ba Linh、Young Ki Min、Ho‐Yeon Song 等 4 位作者2010-08-24Journal of Biomedical Materials Research Part B Applied Biomaterials

Electrospinning of polyvinyl alcohol (PVA), gelatin (GE), and a PVA/GE blend was conducted with the aim of fabricating biodegradable scaffolds for tissue engineering. The process parameters including the concentration of GE in PVA/GE blends, electrical field, and tip-to-collector distance (TCD) were investigated. Elec…

Tissue Engineering and Regenerative MedicineElectrospun Nanofibers in Biomedical ApplicationsAdvanced Sensor and Energy Harvesting Materials

Polarization-engineered GaN/InGaN/GaN tunnel diodes

Sriram Krishnamoorthy、Digbijoy N. Nath、Fatih Akyol 等 6 位作者2010-08-24arXiv

We report on the design and demonstration of polarization-engineered GaN/InGaN/GaN tunnel junction diodes with high current density and low tunneling turn-on voltage. Wentzel-Kramers-Brillouin (WKB) calculations were used to model and design tunnel junctions with narrow bandgap InGaN-based barrier layers. N-polar p-Ga…

cond-mat.otherMaterials Sciencequant-ph

Scanning mid-IR-laser microscopy: an efficient tool for materials studies in silicon-based photonics and photovoltaics

O. V. Astafiev、V. P. Kalinushkin、V. A. Yuryev2010-08-24arXiv

A method of scanning mid-IR-laser microscopy has recently been proposed for the investigation of large-scale electrically and recombination-active defects in semiconductors and non-destructive inspection of semiconductor materials and structures in the industries of microelectronics and photovoltaics. The basis for th…

Materials Sciencephysics.optics

Application of scanning mid-IR-laser microscopy for characterization of semiconductor materials for photovoltaics

V. P. Kalinushkin、O. V. Astafiev、V. A. Yuryev2010-08-24arXiv

The scanning mid-IR-laser microscopy was previously demonstrated as an effective tool for characterization of different semiconductor crystals. Now the technique has been successfully applied for the investigation of CZ SixGe1-x -- a promising material for photovoltaics - and multicrystalline silicon for solar cells.…

Materials Sciencephysics.optics

Dynamics of magnetic charges in artificial spin ice

Paula Mellado、Olga Petrova、Yichen Shen 等 4 位作者2010-08-24arXiv

Artificial spin ice has been recently implemented in two-dimensional arrays of mesoscopic magnetic wires. We propose a theoretical model of magnetization dynamics in artificial spin ice under the action of an applied magnetic field. Magnetization reversal is mediated by domain walls carrying two units of magnetic char…

Materials Science

Koopmans' condition for density-functional theory

Ismaila Dabo、Andrea Ferretti、Nicolas Poilvert 等 6 位作者2010-08-24arXiv

In approximate Kohn-Sham density-functional theory, self-interaction manifests itself as the dependence of the energy of an orbital on its fractional occupation. This unphysical behavior translates into qualitative and quantitative errors that pervade many fundamental aspects of density-functional predictions. Here, w…

Materials Science

Lateral Spin Injection in Germanium Nanowires

En-Shao Liu、Junghyo Nah、Kamran M. Varahramyan 等 4 位作者2010-08-24arXiv

Electrical injection of spin-polarized electrons into a semiconductor, large spin diffusion length, and an integration friendly platform are desirable ingredients for spin-based devices. Here we demonstrate lateral spin injection and detection in germanium nanowires, by using ferromagnetic metal contacts and tunnel ba…

Mesoscale and Nanoscale PhysicsMaterials Science

Temperature dependence of the diffusive conductivity of bilayer graphene

Shaffique Adam、M. D. Stiles2010-08-24Physical Review B

Assuming diffusive carrier transport and employing an effective medium theory, we calculate the temperature dependence of bilayer graphene conductivity due to Fermi-surface broadening as a function of carrier density. We find that the temperature dependence of the conductivity depends strongly on the amount of disorde…

Graphene research and applicationsQuantum and electron transport phenomenaThermal properties of materials

Two-dimensional carbon semiconductor: Density functional theory calculations

David J. Appelhans、Lin, Zhibin、Mark T. Lusk2010-08-24Physical Review B

We show that patterned defects can be used to disrupt the sublattice symmetry of graphene so as to open up a band gap. This way of modifying graphene's electronic structure does not rely on external agencies, the addition of new elements or special boundaries. The method is used to predict a planar, low energy, graphe…

Carbon Nanotubes in Composites2D Materials and ApplicationsGraphene research and applications

Jacquard-woven photonic bandgap fiber displays

Imran Sayed、Joanna Berzowska、Maksim Skorobogatiy2010-08-24arXiv

We present an overview of photonic textile displays woven on a Jacquard loom, using newly discovered polymer photonic bandgap fibers that have the ability to change color and appearance when illuminated with ambient or transmitted light. The photonic fiber can be thin (smaller than 300 microns in diameter) and highly…

physics.opticsMaterials Science

Evolution of electronic structure on Transition Metal doped Titanium Disulfide by angle-resolved photoemission spectroscopy study

X. Y. Cui、H. Negishi、A. N. Titov 等 6 位作者2010-08-24arXiv

We have systematically investigated the structural property and electrical structures of the transition metal intercalated titanium disulfide compound Fe$_x$TiS$_2$ ($0\leq x\leq0.33$) from angle-resolved photoelectron spectroscopy with tunable polarized synchrotron radiation. The effect of intercalation on the energy…

Materials Science

Robust High-κ Response in Molecularly Thin Perovskite Nanosheets

Minoru Osada、Kosho Akatsuka、Yasuo Ebina 等 7 位作者2010-08-24ACS Nano

Size-induced suppression of permittivity in perovskite thin films is a fundamental problem that has remained unresolved for decades. This size-effect issue becomes increasingly important due to the integration of perovskite nanofilms into high-κ capacitors, as well as concerns that intrinsic size effects may limit the…

Semiconductor materials and devicesFerroelectric and Piezoelectric MaterialsMicrowave Dielectric Ceramics Synthesis

Covalent bonded polymer–graphene nanocomposites

K. P. Pramoda、Hazrat Hussain、Hyeong‐Jun Koh 等 5 位作者2010-08-24Journal of Polymer Science Part A Polymer Chemistry

Abstract This report describes a new route to covalently bonded polymer–graphene nanocomposites and the subsequent enhancement in thermal and mechanical properties of the resultant nanocomposites. At first, the graphite is oxidized by the modified Hummers method followed by functionalization with Octadecylamine (ODA).…

Fiber-reinforced polymer compositesGraphene and Nanomaterials ApplicationsGraphene research and applications

Growth and Surface Structure of Zinc Oxide Layers on a Pd(111) Surface

Gunther Weirum、Giovanni Barcaro、Alessandro Fortunelli 等 7 位作者2010-08-24The Journal of Physical Chemistry C

The growth and geometric structure of ultrathin zinc oxide films on Pd(111) has been studied by scanning tunneling microscopy, low-energy electron diffraction, and density functional theory calculations. For sub-monolayer coverages, depending on the oxygen pressure, two well-ordered zinc oxide phases with (4 × 4) and…

Electronic and Structural Properties of OxidesCopper-based nanomaterials and applicationsZnO doping and properties

Giant Thermoelectric Effect from Transmission Supernodes

Justin P. Bergfield、Michelle A. Solis、Charles Stafford2010-08-24ACS Nano

We predict an enormous order-dependent quantum enhancement of thermoelectric effects in the vicinity of higher-order interferences in the transmission spectrum of a nanoscale junction. Single-molecule junctions based on 3,3'-biphenyl and polyphenyl ether (PPE) are investigated in detail. The nonequilibrium thermodynam…

Molecular Junctions and NanostructuresAdvanced Thermodynamics and Statistical MechanicsAdvanced Thermoelectric Materials and Devices

Controlled Delivery Using Oligonucleotide‐Capped Mesoporous Silica Nanoparticles

Estela Climent、Ramón Martínez‐Máñez、Félix Sancenón 等 7 位作者2010-08-24Angewandte Chemie

Deckel hoch! Ein einzelsträngiges Oligonucleotid deckte die Poren auf der Oberfläche eines mesoporösen Siliciumoxidträgers mit eingeschlossenem Gast ab. In Gegenwart eines komplementären Strangs ging das „molekulare Schloss“ des Transportvehikels auf, und die eingeschlossenen Gäste wurden selektiv freigesetzt.

Advanced biosensing and bioanalysis techniquesMesoporous Materials and CatalysisSupramolecular Self-Assembly in Materials