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Large AuAg Alloy Nanoparticles Synthesized in Organic Media Using a One‐Pot Reaction: Their Applications for High‐Performance Bulk Heterojunction Solar Cells

Hsieh‐Chih Chen、Shang‐Wei Chou、Wei‐Hsuan Tseng 等 10 位作者2012-06-04Advanced Functional Materials

Abstract A one‐pot synthesis of large size and high quality AuAg alloy nanoparticles (NPs) with well controlled compositions via hot organic media is demonstrated. Amid the synthesis, complexation between trioctylphosphine (TOP) and metal precursors is found, which slows down the rate of nucleation and leads to the gr…

Gold and Silver Nanoparticles Synthesis and ApplicationsOrganic Electronics and PhotovoltaicsQuantum Dots Synthesis And Properties

Semi‐random P3HT analogs via direct arylation polymerization

Andrey E. Rudenko、Calvin A. Wiley、Shiloh M. Stone 等 5 位作者2012-06-04Journal of Polymer Science Part A Polymer Chemistry

Semi-random P3HT analogs and P3HT were synthesized by direct arylation polymerization (DARP) and Stille polycondensation. In several cases, both methods provide polymers with similar molecular weights and polydispersities. Although these two synthetic protocols are strategically similar, preliminary evidence suggests…

Conducting polymers and applicationsOrganic Light-Emitting Diodes ResearchLuminescence and Fluorescent Materials

Antifogging and Antireflection Coatings Fabricated by Integrating Solid and Mesoporous Silica Nanoparticles without Any Post-Treatments

Ligang Xu、Junhui He2012-06-04ACS Applied Materials & Interfaces

Antifogging and -reflection coatings were fabricated on glass and poly(methyl methacrylate) (PMMA) substrates by integrating solid silica nanoparticles of 25 nm (S-25) and mesoporous silica nanoparticles (MSNs) of 45 nm via layer-by-layer assembly without any post-treatments. Superhydrophilicity and a maximum transmit…

Polymer Surface Interaction StudiesSurface Modification and SuperhydrophobicityAdvanced Fiber Optic Sensors

Laterally confined two-dimensional electron gases in self-patterned LaAlO3/SrTiO3 interfaces

M. Foerster、R. Bachelet、V. Laukhin 等 6 位作者2012-06-04Applied Physics Letters

A bottom-up process has been used to engineer the LaAlO3/SrTiO3 interface atomic composition and locally confine the two-dimensional electron gas to lateral sizes in the order of 100 nm. This is achieved by using SrTiO3(001) substrate surfaces with self-patterned chemical termination, which is replicated by the LaAlO3…

Electronic and Structural Properties of OxidesSemiconductor materials and devicesChemical and Physical Properties of Materials

Benchmarking van der Waals Density Functionals with Experimental Data: Potential Energy Curves for H2 Molecules on Cu(111), (100), and (110) Surfaces

Kyuho Lee、Kristian Berland、Mina Yoon 等 7 位作者2012-06-04arXiv

Detailed physisorption data from experiment for the H_2 molecule on low-index Cu surfaces challenge theory. Recently, density-functional theory (DFT) has been developed to account for nonlocal correlation effects, including van der Waals (dispersion) forces. We show that the functional vdW-DF2 gives a potential-energy…

Materials Science

Laser-sintered thin films of doped SiGe nanoparticles

Benedikt Stoib、Tim Langmann、Sonja Matich 等 13 位作者2012-06-04Applied Physics Letters

We present a study of the morphology and the thermoelectric properties of short-pulse laser-sintered (LS) nanoparticle (NP) thin films, consisting of SiGe alloy NPs or composites of Si and Ge NPs. Laser-sintering of spin-coated NP films in vacuum results in a macroporous percolating network with a typical thickness of…

Thermal Radiation and Cooling TechnologiesAdvanced Thermoelectric Materials and DevicesChalcogenide Semiconductor Thin Films

Issues and Challenges in Orbital-free Density Functional Calculations

V. V. Karasiev、S. B. Trickey2012-06-04arXiv

Solving the Euler equation which corresponds to the energy minimum of a density functional expressed in orbital-free form involves related but distinct computational challenges. One is the choice between all-electron and pseudo-potential calculations and, if the latter, construction of the pseudo-potential. Another is…

Materials ScienceChemical Physics

Ion irradiation tolerance of graphene as studied by atomistic simulations

E. H. Åhlgren、J. Kotakoski、O. Lehtinen 等 4 位作者2012-06-04Applied Physics Letters

As impermeable to gas molecules and at the same time transparent to high-energy ions, graphene has been suggested as a window material for separating a high-vacuum ion beam system from targets kept at ambient conditions. However, accumulation of irradiation-induced damage in the graphene membrane may give rise to its…

Graphene research and applicationsGraphite, nuclear technology, radiation studiesIon-surface interactions and analysis

Release of Carbon Nanotubes from an Epoxy-Based Nanocomposite during an Abrasion Process

Lukas Schlagenhauf、Bryan Chu、Jelena Buha 等 5 位作者2012-06-04Environmental Science & Technology

The abrasion behavior of an epoxy/carbon nanotube (CNT) nanocomposite was investigated. An experimental setup has been established to perform abrasion, particle measurement, and collection all in one. The abraded particles were characterized by particle size distribution and by electron microscopy. The abrasion proces…

Polymer Nanocomposites and PropertiesPolymer Nanocomposite Synthesis and IrradiationCarbon Nanotubes in Composites

Electric modulation of magnetization at the BaTiO3/La0.67Sr0.33MnO3 interfaces

Haidong Lu、T. Adrian George、Y. Wang 等 15 位作者2012-06-04Applied Physics Letters

We report large (>10%) magnetization modulation by ferroelectric polarization reversal in the ferroelectric-ferromagnetic BaTiO3/La0.67Sr0.33MnO3 (BTO/LSMO) heterostructures. We find that the electrically induced change in magnetization is limited to the BTO/LSMO interface but extends about 3 nm deep into the L…

Magnetic and transport properties of perovskites and related materialsAdvanced Condensed Matter PhysicsMultiferroics and related materials

Symmetry-dependent transport properties and magnetoresistance in zigzag silicene nanoribbons

Jun Kang、Fengmin Wu、Jingbo Li2012-06-04Applied Physics Letters

First principles calculations are performed to study the transport properties of zigzag silicene nanoribbons (ZSiNRs). ZSiNRs show symmetry-dependent transport properties similar to those of zigzag graphene nanoribbons, although the σ mirror plane is absent. Even-N and odd-N ZSiNRs have very different current-voltage…

Graphene research and applicationsAdvancements in Battery MaterialsQuantum and electron transport phenomena

Localization analysis of variationally based gradient plasticity model

Milan Jirásek、Ondřej Rokoš、Jan Zeman2012-06-04arXiv

The paper presents analytical or semi-analytical solutions for the formation and evolution of localized plastic zone in a uniaxially loaded bar with variable cross-sectional area. A variationally based formulation of explicit gradient plasticity with linear softening is used, and the ensuing jump conditions and bounda…

Materials Science

Ion beam synthesis of nanothermochromic diffraction gratings with giant switching contrast at telecom wavelengths

Johannes Zimmer、A. Wixforth、H. Karl 等 4 位作者2012-06-04Applied Physics Letters

Nanothermochromic diffraction gratings based on the metal-insulator transition of VO2 are fabricated by site-selective ion beam implantation in a SiO2 matrix. Gratings were defined either (i) directly by spatially selective ion beam synthesis or (ii) by site-selective deactivation of the phase transition by ion beam i…

Photorefractive and Nonlinear OpticsTransition Metal Oxide NanomaterialsAdvanced Memory and Neural Computing

Emergent quantum confinement at topological insulator surfaces

M. S. Bahramy、P. D. C. King、A. de la Torre 等 11 位作者2012-06-04arXiv

Bismuth-chalchogenides are model examples of three-dimensional topological insulators. Their ideal bulk-truncated surface hosts a single spin-helical surface state, which is the simplest possible surface electronic structure allowed by their non-trivial $\mathbb{Z}_2$ topology. They are therefore widely regarded ideal…

Strongly Correlated ElectronsMaterials ScienceMesoscale and Nanoscale Physics

Tunnelling anisotropic magnetoresistance of Fe/GaAs/Ag(001) junctions from first principles: Effect of hybridized interface resonances

Rudolf Sykora、Ilja Turek2012-06-04arXiv

Results of first-principles calculations of the Fe/GaAs/Ag(001) epitaxial tunnel junctions reveal that hybridization of interface resonances formed at both interfaces can enhance the tunnelling anisotropic magnetoresistance (TAMR) of the systems. This mechanism is manifested by a non-monotonic dependence of the TAMR e…

Materials Science

Collective Plasmonic-Molecular Modes in the Strong Coupling Regime

Adi Salomon、Robert J. Gordon、Yehiam Prior 等 5 位作者2012-06-04arXiv

We demonstrate strong coupling between molecular excited states and surface plasmon modes of a slit array in a thin metal film. The coupling manifests itself as an anti-crossing behavior of the two newly formed polaritons. As the coupling strength grows, a new mode emerges, which is attributed to long range molecular…

Materials Sciencephysics.opticsMesoscale and Nanoscale Physics

Testing the Elliott-Yafet spin-relaxation mechanism in KC8: A model system of biased graphene

Gábor Fábián、Balázs Dóra、Ágnes Antal 等 9 位作者2012-06-04Physical Review B

Temperature-dependent electron spin resonance (ESR) measurements are reported on stage-1 potassium-doped graphite, a model system of biased graphene. The ESR linewidth is nearly isotropic, and although the $g$ factor has a sizable anisotropy, its majority is shown to arise due to macroscopic magnetization. Even though…

Advancements in Battery MaterialsQuantum and electron transport phenomenaGraphene research and applications

The role of stepped surfaces on the magnetotransport in strained thin films of La0.67Ca0.33MnO3

C. Beekman、J. Aarts2012-06-04arXiv

We report a comparative study of the properties of very thin films of La0.67Ca0.33MnO3 grown epitaxially under strain on flat SrTiO3 (STO) and on 1 deg miscut STO. For the films on flat STO the transport properties show well-known behavior, namely values of the metal-insulator transition temperature which are strongly…

Strongly Correlated ElectronsMaterials Science

Symmetry Effects on Nonlocal Electron-Phonon Coupling in Organic Semiconductors

Yuan Li、Yuanping Yi、Veaceslav Coropceanu 等 4 位作者2012-06-04arXiv

The electronic and electrical properties of crystalline organic semiconductors, such as the dispersions of the electronic bands and the dependence of charge-carrier mobility on temperature, are greatly impacted by the nonlocal electron-phonon interactions associated with intermolecular lattice vibrations. Here, we pre…

Materials Science

Micro-Brillouin spectroscopy mapping of the residual density field induced by Vickers indentation in a soda-lime silicate glass

Hai T. Tran、Sébastien Clément、Rémy Vialla 等 5 位作者2012-06-04Applied Physics Letters

High-resolution Brillouin scattering is used to achieve 3-dimensional maps of the longitudinal acoustic mode frequency shift in soda-lime silicate glasses subject to Vickers indentations. Assuming that residual stress-induced effects are simply proportional to density changes, residual densification fields are obtaine…

Building materials and conservationGlass properties and applicationsLaser Material Processing Techniques