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Strong influence of packing density in terahertz metamaterials

Ranjan Singh、Carsten Rockstuhl、Weili Zhang2010-12-13Applied Physics Letters

We investigate the response of a terahertz metamaterial depending on the unit cell density. The fundamental inductive capacitive (LC) resonance has its highest quality (Q) factor for a critical period Pc=λ/n, with λ being the LC resonance wavelength and n being the refractive index of the substrate. This occurs due to…

Metamaterials and Metasurfaces ApplicationsPlasmonic and Surface Plasmon ResearchTerahertz technology and applications

Space-charge-limited leakage current in high dielectric constant and ferroelectric thin films considering the field-dependent permittivity

Jirong Sun、Xue Zheng、W. Yin 等 5 位作者2010-12-13Applied Physics Letters

Distinguishing from the traditional characterization on high-field leakage current density-voltage relationship, the field-dependent permittivity from the polarization derivative is used to solve the space-charge-limited conduction, and the simulated leakage current densities are compared with the previous experimenta…

Ferroelectric and Piezoelectric MaterialsSemiconductor materials and devicesAcoustic Wave Resonator Technologies

Chitosan-functionalized porous silicon optical transducer for the detection ofcarboxylic acid-containing drugs in water

Beniamino Sciacca、Emilie Secret、Stéphanie Pace 等 7 位作者2010-12-13Journal of Materials Chemistry

A chitosan/porous silicon biosensing platform for the detection of carboxylic acid-containing drugs in water is prepared and characterized. Parasitic layer-free films of mesoporous silicon are electrochemically etched and functionalized by covalent attachment of chitosan oligomers. The presence of the chitosan species…

Silicon Nanostructures and PhotoluminescenceNanowire Synthesis and ApplicationsAnalytical Chemistry and Sensors

Switchable Three-State Fluorescence of a Nonconjugated Donor−Acceptor Triarylborane

Zachary M. Hudson、Xiangyang Liu、Suning Wang2010-12-13Organic Letters

A nonconjugated fluorescent molecule with a triarylboron acceptor and an alkylamine donor has been found to display bright green fluorescence due to charge transfer through space, which can be reversibly deactivated by blocking either the donor or acceptor site. Binding of the fluoride ion to boron switches the fluore…

Luminescence and Fluorescent MaterialsOrganoboron and organosilicon chemistrySulfur-Based Synthesis Techniques

Lattice thermal conductivity: Computations and theory of the high-temperature breakdown of the phonon-gas model

Tao Sun、Philip B. Allen2010-12-13Physical Review B

We use classical molecular dynamics to evaluate the thermal conductivity $\ensuremath{\kappa}(T)$ from the heat-flux correlation $⟨\mathbf{j}(0)\mathbf{j}(t)⟩$ for a two-dimensional Lennard-Jones triangular lattice. Our work, which follows Ladd, Moran, and Hoover [Phys. Rev. B 34, 5058 (1986)], finds large deviations…

Material Dynamics and PropertiesThermal properties of materialsThermal Radiation and Cooling Technologies

Graphene growth by molecular beam epitaxy on the carbon-face of SiC

E. Moreau、S. Godey、F. J. Ferrer 等 9 位作者2010-12-13Applied Physics Letters

Graphene layers have been grown by molecular beam epitaxy (MBE) on the (0001¯) C-face of SiC and have been characterized by atomic force microscopy, low energy electron diffraction (LEED), and UV photoelectron spectroscopy. Contrary to the graphitization process, the step-terrace structure of SiC is fully preserved du…

Advancements in Battery MaterialsGraphene research and applicationsBoron and Carbon Nanomaterials Research

Preparation and Characterization of Insoluble Silk Fibroin/Chitosan Blend Films

Mariana Agostini de Moraes、Grínia M. Nogueira、Raquel Farias Weska 等 4 位作者2010-12-13Polymers

The aim of this study was to prepare and characterize membranes of silk fibroin (SF) and chitosan (CHI) blends. Moreover, a conformation transition of SF to a more stable form induced by the addition of CHI was verified. Blend membranes were prepared, after pH adjustment, in different ratios, and physical integrity, c…

Electrospun Nanofibers in Biomedical ApplicationsSilk-based biomaterials and applicationsSilkworms and Sericulture Research

Poly(carbonate-urethane): an isocyanate-free procedure from α,ω-di(cyclic carbonate) telechelic poly(trimethylene carbonate)s

Marion Hélou、Jean‐François Carpentier、Sophie M. Guillaume2010-12-13Green Chemistry

A simple isocyanate-free method to synthesize poly(trimethylene carbonate hydroxy-urethane)s is described. The strategy first involves the synthesis of α,ω-di(cyclic carbonate) telechelic polycarbonate precursors upon ring-opening polymerization of trimethylene carbonate using a cyclic carbonate alcohol as chain trans…

biodegradable polymer synthesis and propertiesPolymer composites and self-healingCarbon dioxide utilization in catalysis

Grain size effect on the nonlinear dielectric properties of barium titanate ceramics

Lavinia Curecheriu、María Teresa Buscaglia、Vincenzo Buscaglia 等 5 位作者2010-12-13Applied Physics Letters

The nonlinear dielectric properties of dense BaTiO3 ceramics with grain size of 1 μm–90 nm were investigated. In the finest ceramics, the permittivity reduces below 1000 and a remarkable nonhysteretic linear dc-tunability [ε(E)] is obtained at high field, above 40 kV/cm. The observed behavior was explained by consider…

Ferroelectric and Piezoelectric MaterialsMultiferroics and related materialsDielectric materials and actuators

Topological Order Parameters for Interacting Topological Insulators

Zhong Wang、Xiao-Liang Qi、Shou-Cheng Zhang2010-12-13arXiv

We propose a topological order parameter for interacting topological insulators, expressed in terms of the full Green's functions of the interacting system. We show that it is exactly quantized for a time reversal invariant topological insulator, and it can be experimentally measured through the topological magneto-el…

Mesoscale and Nanoscale PhysicsMaterials ScienceStrongly Correlated Electrons

Graphene quantum dots formed by a spatial modulation of the Dirac gap

G. Giavaras、Franco Nori2010-12-13Applied Physics Letters

An electrostatic quantum dot cannot be formed in monolayer graphene because of the Klein tunneling. However, a dot can be formed with the help of a uniform magnetic field. As shown here, a spatial modulation of the Dirac gap leads to confined states with discrete energy levels, thus defining a dot, without applying ex…

Graphene research and applicationsTopological Materials and PhenomenaGraphene and Nanomaterials Applications

Monolithic diamond optics for single photon detection

P. Siyushev、F. Kaiser、V. Jacques 等 11 位作者2010-12-13Applied Physics Letters

In this work, we experimentally demonstrate a novel and simple approach that uses off-the-shelf optical elements to enhance the collection efficiency from a single emitter. The key component is a solid immersion lens made of diamond, the host material for single color centers. We improve the excitation and detection o…

Diamond and Carbon-based Materials ResearchPhotonic Crystals and ApplicationsNear-Field Optical Microscopy

Near-Infrared Solid-State Emitters Based on Isophorone: Synthesis, Crystal Structure and Spectroscopic Properties.

Julien Massin、Wissam Dayoub、Jean‐Christophe Mulatier 等 6 位作者2010-12-13Chemistry of Materials

A series of near-infrared solid-state emitters based on the dicyanoisophorone electron acceptor group was synthesized. The solid-state spectroscopic properties were studied by UV−visible absorption spectroscopy and fluorescence spectroscopy and analyzed in light of the single crystal structures obtained by X-ray diffr…

Molecular Sensors and Ion DetectionOrganic Light-Emitting Diodes ResearchLuminescence and Fluorescent Materials

The van Hove distribution function for Brownian hard spheres: Dynamical test particle theory and computer simulations for bulk dynamics

Paul Hopkins、Andrea Fortini、Andrew J. Archer 等 4 位作者2010-12-13The Journal of Chemical Physics

We describe a test particle approach based on dynamical density functional theory (DDFT) for studying the correlated time evolution of the particles that constitute a fluid. Our theory provides a means of calculating the van Hove distribution function by treating its self and distinct parts as the two components of a…

Material Dynamics and PropertiesBlock Copolymer Self-AssemblyAdvanced Physical and Chemical Molecular Interactions

Carbon nanotube-based electron field emitters

Александр В. Елецкий2010-12-13Physics-Uspekhi

The current status of research and development of carbon nanotubes (CNTs) electron field emitters is reviewed. The physical aspects of electron field emission that underlie the unique emission properties of CNTs are considered. Physical effects and phenomena affecting the emission characteristics of CNT cathodes are a…

Carbon Nanotubes in CompositesGraphene research and applicationsNanotechnology research and applications

Theoretical and experimental developments for accurate determination of crystallinity of cellulose I materials

Carlos Driemeier、Guilherme A. Calligaris2010-12-13Journal of Applied Crystallography

This work defines the crystallinity of cellulose I materials on a dry-weight basis. Theoretical and experimental developments in X-ray diffraction lead to a crystallinity determination method that is estimated to reach 1σ accuracies of better than 0.05 (crystallinity defined between 0 and 1). The method is based on Ri…

Advanced Cellulose Research StudiesMaterial Properties and Processing

Significant Impact of Thermo-Mechanical Conditions on Polymer Triple-Shape Memory Effect

Junjun Li、Tao Xie2010-12-13Macromolecules

A polymer triple-shape memory effect represents one of the most recent discoveries in the rapidly expanding field of shape memory polymers. It refers to the capability of a polymer to memorize two temporary shapes and subsequently recover them, all in one shape memory cycle. Although several examples of triple-shape p…

Polymer composites and self-healingMarine Sponges and Natural ProductsSynthetic Organic Chemistry Methods

Substrate-free microwave synthesis of graphene: experimental conditions and hydrocarbon precursors

Albert Dato、Michael Frenklach2010-12-13New Journal of Physics

The effects of applied microwave power, gas flow rate and precursor composition on the substrate-free gas-phase synthesis of graphene were investigated. Graphene was produced through the delivery of ethanol droplets into argon plasmas, and a decrease in the flow rate of the gas used to generate the plasmas resulted in…

Carbon Nanotubes in CompositesGraphene research and applicationsMuon and positron interactions and applications

Eighth-order phase-field-crystal model for two-dimensional crystallization

A. Jaatinen、Tapio Ala-Nissilä2010-12-13Physical Review E

We present a derivation of the recently proposed eighth-order phase-field crystal model [A. Jaatinen, Phys. Rev. E 80, 031602 (2009)] for the crystallization of a solid from an undercooled melt. The model is used to study the planar growth of a two-dimensional hexagonal crystal, and the results are compared against si…

Aluminum Alloy Microstructure PropertiesSolidification and crystal growth phenomenananoparticles nucleation surface interactions

Intrinsic Reliability improvement in Biaxially Strained SiGe p-MOSFETs

Shweta Deora、Abhijeet Paul、R. Bijesh 等 8 位作者2010-12-13arXiv

In this letter we not only show improvement in the performance but also in the reliability of 30nm thick biaxially strained SiGe (20%Ge) channel on Si p-MOSFETs. Compared to Si channel, strained SiGe channel allows larger hole mobility (μh) in the transport direction and alleviates charge flow towards the gate oxide.…

Mesoscale and Nanoscale PhysicsMaterials Science