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Self-Templated Synthesis of Hierarchically Porous N-Doped Carbon Derived from Biomass for Supercapacitors

Yameng Wang、Ting Liu、Xiangjun Lin 等 10 位作者2018-09-20ACS Sustainable Chemistry & Engineering

Hierarchically porous nitrogen-doped carbon (HPNC) with a helically arranged rodlike structure has been synthesized by in situ growth of ZIF-8 (zeolitic imidazolate frameworks) nanoparticles on cellulose nanocrystals (CNC), which simultaneously acts as both a self-template and a carbon source, and controls the growth…

Supercapacitor Materials and FabricationElectrocatalysts for Energy ConversionAdvancements in Battery Materials

Microstructural effects on strain rate and dwell sensitivity in dual-phase titanium alloys

Sana Waheed、Zebang Zheng、Daniel S. Balint 等 4 位作者2018-09-20Acta Materialia

In this study, stress relaxation tests are performed to determine and compare the strain rate sensitivity of different α−β titanium alloy microstructures using discrete dislocation plasticity (DDP) and crystal plasticity finite element (CPFE) simulations. The anisotropic α and β phase properties of alloy Ti-6242 are e…

Titanium Alloys Microstructure and PropertiesHigh-Velocity Impact and Material BehaviorMicrostructure and mechanical properties

Surface-Mediated Aligned Growth of Monolayer MoS2 and In-Plane Heterostructures with Graphene on Sapphire

Kenshiro Suenaga、Hyun Goo Ji、Yung‐Chang Lin 等 15 位作者2018-09-20ACS Nano

Aligned growth of transition metal dichalcogenides and related two-dimensional (2D) materials is essential for the synthesis of high-quality 2D films due to effective stitching of merging grains. Here, we demonstrate the controlled growth of highly aligned molybdenum disulfide (MoS 2 ) on c -plane sapphire with two di…

2D Materials and ApplicationsGraphene research and applicationsMXene and MAX Phase Materials

Huygens’ Metadevices for Parametric Waves

Mingkai Liu、David A. Powell、Yair Zarate 等 4 位作者2018-09-20Physical Review X

A time-varying Huygens' metasurface, composed of independently controlled electric and magnetic meta-atoms, can steer transmitted or reflected EM waves dynamically in nearly any direction without sacrificing efficiency.

Advanced Wireless Communication TechnologiesMetamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface Technologies

Synthetic Lateral Metal-Semiconductor Heterostructures of Transition Metal Disulfides

Wei Sun Leong、Qingqing Ji、Nannan Mao 等 14 位作者2018-09-20Journal of the American Chemical Society

Lateral heterostructures with planar integrity form the basis of two-dimensional (2D) electronics and optoelectronics. Here we report that, through a two-step chemical vapor deposition (CVD) process, high-quality lateral heterostructures can be constructed between metallic and semiconducting transition metal disulfide…

Perovskite Materials and Applications2D Materials and ApplicationsMXene and MAX Phase Materials

Research Progress of NiMn Layered Double Hydroxides for Supercapacitors: A Review

Ailan Yan、Xinchang Wang、J.P. Cheng2018-09-20Nanomaterials

The research on supercapacitors has been attractive due to their large power density, fast charge/discharge speed and long lifespan. The electrode materials for supercapacitors are thus intensively investigated to improve the electrochemical performances. Various transition metal layered double hydroxides (LDHs) with…

Layered Double Hydroxides Synthesis and ApplicationsSupercapacitor Materials and FabricationNanomaterials for catalytic reactions

D-carbon: Ab initio study of a novel carbon allotrope

Dong Fan、Shaohua Lu、Andrey A. Golov 等 5 位作者2018-09-20The Journal of Chemical Physics

By means of ab initio computations and the global minimum structure search method, we have investigated structural, mechanical, and electronic properties of D-carbon, a crystalline orthorhombic sp3 carbon allotrope (space group Pmma [D2h5] with 6 atoms per cell). Total-energy calculations demonstrate that D-carbon is…

High-pressure geophysics and materialsEnergetic Materials and CombustionBoron and Carbon Nanomaterials Research

Thermally and field-driven mobility of emergent magnetic charges in square artificial spin ice

Sophie A. Morley、Jose Maria Porro、Aleš Hrabec 等 10 位作者2018-09-20arXiv

Designing and constructing model systems that embody the statistical mechanics of frustration is now possible using nanotechnology. We have arranged nanomagnets on a two-dimensional square lattice to form an artificial spin ice, and studied its fractional excitations, emergent magnetic monopoles, and how they respond…

Materials Sciencecond-mat.dis-nnMesoscale and Nanoscale Physics

Skyrmion ratchet effect driven by a biharmonic force

Weijin Chen、Linjie Liu、Ye Ji 等 4 位作者2018-09-20arXiv

Based on micromagnetic simulation and analysis of Thiele's equation, in this work we demonstrate that ratchet motion of skyrmion can be induced by a biharmonic in-plane magnetic field hx(t) = h1sin(mwt) + h2sin(nwt + phi), provided that integers m and n are coprime and that m + n is odd. Remarkably, the speed and dire…

Materials Science

Multiple-$Q$ magnetic orders in Rashba-Dresselhaus metals

Ken N. Okada、Yasuyuki Kato、Yukitoshi Motome2018-09-20arXiv

We study magnetic textures realized in noncentrosymmetric Kondo lattice models, in which localized magnetic moments weakly interact with itinerant electrons subject to Rashba and Dresselhaus spin-orbit couplings. By virtue of state-of-the-art numerical simulations as well as variational calculations, we uncover versat…

Strongly Correlated ElectronsMaterials Science

Phase components in Zr7Ni10 and Hf7Ni10 binary alloys; investigations by perturbed angular correlation spectroscopy and first principles calculations

S. K. Dey、C. C. Dey、S. Saha 等 6 位作者2018-09-20arXiv

Intermetallic compounds Zr7Ni10 and Hf7Ni10 have been studied by perturbed angular correlation (PAC) spectroscopy considering the fact that Zr7Ni10 has application as hydrogen storage material in fuel cell. In stoichiometric Zr7Ni10, the phase Zr2Ni7 is found to be dominant (~38%) while a fraction of ~25% is found for…

Materials Science

A global optimisation study of the low-lying isomers of the alumina octomer (Al$_2$O$_3$)$_8$

David Gobrecht、Leen Decin、Sergio Cristallo 等 4 位作者2018-09-20arXiv

We employ the Monte-Carlo Basin-Hopping (MC-BH) global optimisation technique with inter- atomic pair potentials to generate low-energy candidates of stoichiometric alumina octomers ((Al$_2$O$_3$)$_8$). The candidate structures are subsequently refined with density functional theory calculations employing hybrid funct…

Materials ScienceChemical Physics

Strong and Tunable Spin-Lifetime Anisotropy in Dual-Gated Bilayer Graphene

Jinsong Xu、Tiancong Zhu、Yunqiu Kelly Luo 等 5 位作者2018-09-20Physical Review Letters

We report the discovery of a strong and tunable spin-lifetime anisotropy with excellent out-of-plane spin lifetimes up to 7.8 ns at 100 K in dual-gated bilayer graphene. Remarkably, this realizes the manipulation of spins in graphene by electrically controlled spin-orbit fields, which is unexpected due to graphene's w…

2D Materials and ApplicationsQuantum and electron transport phenomenaGraphene research and applications

Morphological, nanostructural, and compositional evolution during phase separation of a model Ni-Al-Mo superalloy: Atom-probe tomographic experiments and lattice-kinetic Monte Carlo simulations

Yiyou Tu、Zugang Mao、Ronald D. Noebe 等 4 位作者2018-09-20arXiv

The details of phase separation of a Ni-6.5Al-9.9Mo aged at 978 K for aging times ranging from 0.125 to 1024 h are investigated by atom-probe tomography and lattice-kinetic Monte Carlo (LKMC) simulations. On the basis of the temporal evolution of the nanostructure, three experimental regimes are identified: (1) concom…

Materials Science

Synthesis, structural and photo physical properties of perovskite oxide (KNbO3)1-X+(La2NiMnO6)X for photovoltaic application

Md S. Sheikh、A. Dutta、T. K. Bhowmik 等 6 位作者2018-09-20arXiv

Solid solutions of perovskite oxides (KNbO3)1-x+(La2NiMnO6)x (x=0, 0.1, 0.2 and 0.3) with a variation of band gap (1.33-3.6 eV) have been introduced as a promising photovoltaic absorber. The structural characterization of the prepared samples was carried out using X-ray diffraction (followed by Rietveld refinement) an…

Materials Science

Controlled Inertial Cavitation as a Route to High Yield Liquid Phase Exfoliation of Graphene

Piers Turner、Mark Hodnett、Robert Dorey 等 4 位作者2018-09-20arXiv

Ultrasonication is widely used to exfoliate two dimensional (2D) van der Waals layered materials such as graphene. Its fundamental mechanism, inertial cavitation, is poorly understood and often ignored in ultrasonication strategies resulting in low exfoliation rates, low material yields and wide flake size distributio…

Materials Science

Analytical link between structural strength size effect and material random heterogeneity

Emmanuel Roubin、Jean-Baptiste Colliat2018-09-20arXiv

A theoretical scaling law for the size effect of the strength of brittle materials is presented. To some extend, it can be seen as an extension of the well known Weibull law. For that a correlated Random Fields is used to model the heterogeneities of the material. Thanks to recent results on the geometry of excursion…

Materials Science

First-Principle Investigations of Carrier Multiplication in Si Nanocrystals: a Short Review

Ivan Marri、Stefano Ossicini2018-09-20arXiv

Carrier Multiplication (CM) is a Coulomb-driven non-radiative recombination mechanism which leads to the generation of multiple electron-hole pairs after absorption of a single high-energy photon. Recently a new CM process, termed space separated quantum cutting, was introduced to explain a set of new experiments cond…

Materials Science

Fabrication of photonic nanostructures from hexagonal boron nitride

Johannes E. Fröch、Yongsop Hwang、Sejeong Kim 等 5 位作者2018-09-20arXiv

Growing interest in devices based on layered van der Waals (vdW) materials is motivating the development of new nanofabrication methods. Hexagonal boron nitride (hBN) is one of the most promising materials for studies of quantum photonics and polaritonics. Here, we report in detail on a promising nanofabrication proce…

Materials ScienceApplied Physicsphysics.optics