Lizhi Sheng、Tong Wei、Yuan Liang 等 6 位作者2017-04-18Small
Graphene fiber based micro-supercapacitors (GF micro-SCs) have attracted great attention for their potential applications in portable and wearable electronics. However, due to strong π–π stacking of nanosheets for graphene fibers, the limited ion accessible surface area and slow ion diffusion rate leads to low specifi…
Graphene research and applicationsAdvancements in Battery MaterialsSupercapacitor Materials and Fabrication
Zeyang Ren、Jinfeng Zhang、Jincheng Zhang 等 7 位作者2017-04-18IEEE Electron Device Letters
We report the first attempt of the diamond MOSFETs with MoO3dielectric directly deposited on H-diamond surface preserving atmospheric-adsorbate-induced 2DHG. The transistors with 4-μm gate show a transconductance of 29 mS/mm and an ON-resistance of 75.25 Ω · mm at |VGS - VTH| = 2.2 V, respectively. The effective mobil…
Semiconductor materials and devicesMetal and Thin Film MechanicsDiamond and Carbon-based Materials Research
Wentong Gao、Mengyao Bie、Fu Liu 等 5 位作者2017-04-18ACS Applied Materials & Interfaces
Polysulfide sealants have been commercially applied in many industrial fields. In this article, we study the self-healing property of the epoxy resin-cured polysulfide sealants for the first time. The obtained sealants showed a flexible range of ultimate elongation of 157-478% and a tensile strength of 1.02-0.75 MPa c…
Synthesis and properties of polymersSilicone and Siloxane ChemistryPolymer composites and self-healing
Gen Zhang、Liang Wu、Aitao Tang 等 7 位作者2017-04-18Advanced Materials Interfaces
In this work, anodic films consisted of a mixed oxide of aluminum and magnesium are developed on magnesium alloy by anodizing process. Then, MgAl‐layered double hydroxide (LDH) films are prepared by using this anodic film as a source of cations, without the introduction of any kinds of trivalent metal salts. After tha…
Magnesium Oxide Properties and ApplicationsLayered Double Hydroxides Synthesis and ApplicationsMagnesium Alloys: Properties and Applications
Feng Teng、Weixin Ouyang、Yanmei Li 等 5 位作者2017-04-18Small
A novel type of high performance ultraviolet (UV) photodetector (PD) based on a ZnO film has been prepared by incorporating a BiOCl nanostructure into the film. The responsivity of the BiOCl/ZnO hybrid film PD in UV region can reach 182.87 mA W−1, which is about 2.72 and 6.87 times for that of TiO2/ZnO hybrid film PD…
Ga2O3 and related materialsZnO doping and propertiesGas Sensing Nanomaterials and Sensors
Ziyauddin Khan、Baskar Senthilkumar、Seongdong Lim 等 6 位作者2017-04-18Advanced Materials Interfaces
Cobalt pyrophosphate (Co 2 P 2 O 7 ) has emerged as an attractive material due to its high specific energy and redox behavior of cobalt, however, problems associated with its poor specific capacitance and cyclic stability have prevented its realization. Here, the authors circumvent these problems by hydrothermally syn…
Supercapacitor Materials and FabricationAdvanced battery technologies researchAdvancements in Battery Materials
Zahra Jalilian、Saeideh Edalati-Boostan、Rostam Moradian2017-04-18arXiv
In this article, we report the growth of gold nanorods on glass substrates and copper nanoparticle thin films by cylindrical direct current magnetron sputtering (CDCMS) at room temperature. The grown gold nanorods have short lengths of < 20nm and show negative optical parameters in UV-Vis region. So far negative permi…
physics.opticsMaterials Science
Z. Guguchia、F. v. Rohr、Z. Shermadini 等 20 位作者2017-04-18arXiv
MoTe_2, with the orthorhombic T_d phase, is a new type (type-II) of Weyl semimetal, where the Weyl Fermions emerge at the boundary between electron and hole pockets. Non-saturating magnetoresistance (MR), and superconductivity were also observed in T_d-MoTe_2. Understanding the superconductivity in T_d-MoTe_2, which w…
SuperconductivityMaterials Sciencecond-mat.other
Nicolas David Müglich、Gerhard Götz、Alexander Gaul 等 7 位作者2017-04-18arXiv
The mechanism of ion bombardment induced magnetic patterning of exchange bias layer systems for creating engineered magnetic stray field landscapes is still unclear. We compare results from vectorial magneto-optic Kerr effect measurements to a recently proposed model with time dependent rotatable magnetic anisotropy.…
Materials Science
Jun Yu Lin、Nai Chao Hu、You Jian Chen 等 5 位作者2017-04-18arXiv
Topological phase transitions, which have fascinated generations of physicists, are always demarcated by gap closures. In this work, we propose very simple 2D photonic crystal lattices with gap closure points, i.e. band degeneracies protected by nonsymmorphic symmetry. Our photonic structures are relatively easy to fa…
Mesoscale and Nanoscale Physicsphysics.opticsMaterials Science
V. Tsurkan、L. Prodan、V. Felea 等 10 位作者2017-04-18arXiv
We report structural, susceptibility and specific heat studies of stoichiometric and off-stoichiometric poly- and single crystals of the A-site spinel compound FeSc2S4. In stoichiometric samples no long-range magnetic order is found down to 1.8 K. The magnetic susceptibility of these samples is field independent in th…
Materials Science
Mark Lundeberg、Yuanda Gao、Reza Asgari 等 14 位作者2017-04-18arXiv
The response of an electron system to electromagnetic fields with sharp spatial variations is strongly dependent on quantum electronic properties, even in ambient conditions, but difficult to access experimentally. We use propagating graphene plasmons, together with an engineered dielectric-metallic environment, to pr…
Materials ScienceMesoscale and Nanoscale Physicsphysics.optics
M. Schott、A. Bernand-Mantel、L. Ranno 等 10 位作者2017-04-18arXiv
Nanoscale magnetic skyrmions are considered as potential information carriers for future spintronics memory and logic devices. Such applications will require the control of their local creation and annihilation, which involves so far solutions that are either energy consuming or difficult to integrate. Here we demonst…
Materials Science
Tieren Gao、Xiaohang Zhang、William Ratcliff 等 15 位作者2017-04-18Nano Letters
Electric-field (E-field) control of magnetism enabled by multiferroic materials has the potential to revolutionize the landscape of present memory devices plagued with high energy dissipation. To date, this E -field controlled multiferroic scheme has only been demonstrated at room temperature using BiFeO 3 films grown…
Advanced Condensed Matter PhysicsMultiferroics and related materialsFerroelectric and Piezoelectric Materials
H. Xiong、J. A. Sobota、S. -L. Yang 等 13 位作者2017-04-18arXiv
We have performed a systematic high-momentum-resolution photoemission study on ZrTe$_5$ using $6$ eV photon energy. We have measured the band structure near the $Γ$ point, and quantified the gap between the conduction and valence band as $18 \leq Δ\leq 29$ meV. We have also observed photon-energy-dependent behavior at…
Materials ScienceMesoscale and Nanoscale Physics
Xinyang Zhang、Corbyn Mellinger、Eugene V Colla 等 5 位作者2017-04-18Physical review. B./Physical review. B
Barkhausen current noise is used to probe the slow field-driven conversion of the glassy relaxor ferroelectric state to an ordered ferroelectric state. The frequent presence of distinct micron-scale Barkhausen events well before the polarization current starts to speed up shows that the process is not a conventional n…
Ferroelectric and Piezoelectric MaterialsMultiferroics and related materialsAcoustic Wave Resonator Technologies
Mit H. Naik、Manish Jain2017-04-18Physical review. B./Physical review. B
We study the origin of layer dependence in band structures of two-dimensional (2D) materials. We find that the layer dependence, at the density functional theory (DFT) level, is a result of quantum confinement and the nonlinearity of the exchange-correlation functional. We use this to develop an efficient scheme for p…
2D Materials and ApplicationsGa2O3 and related materialsGraphene research and applications
Marcel Filoche、Marco Piccardo、Yuh-Renn Wu 等 6 位作者2017-04-18arXiv
We present here a model of carrier distribution and transport in semiconductor alloys accounting for quantum localization effects in disordered materials. This model is based on the recent development of a mathematical theory of quantum localization which introduces for each type of carrier a spatial function called \…
Materials Science
Chi-Kang Li、Marco Piccardo、Li-Shuo Lu 等 10 位作者2017-04-18arXiv
This paper introduces a novel method to account for quantum disorder effects into the classical drift-diffusion model of semiconductor transport through the localization landscape theory. Quantum confinement and quantum tunneling in the disordered system change dramatically the energy barriers acting on the perpendicu…
Materials Science
Dongyan Zhang、Chao Zhou、Sen Yang 等 5 位作者2017-04-18arXiv
A phenomenological thermodynamic potential was constructed based on the symmetry analysis and property characterization of bulk DyCo2. An eight-order polynomial of Landau expansion was employed to describe the thermodynamic behavior of DyCo2. Several properties were reproduced including ferromagnetic transition temper…
Materials Science