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Hexagonal Boron Nitride Tunnel Barriers Grown on Graphite by High Temperature Molecular Beam Epitaxy

Yong-Jin Cho、Alex Summerfield、Andrew J. Davies 等 11 位作者2016-09-29Scientific Reports

Abstract We demonstrate direct epitaxial growth of high-quality hexagonal boron nitride (hBN) layers on graphite using high-temperature plasma-assisted molecular beam epitaxy. Atomic force microscopy reveals mono- and few-layer island growth, while conducting atomic force microscopy shows that the grown hBN has a resi…

Graphene research and applicationsDiamond and Carbon-based Materials Research2D Materials and Applications

Biodegradable functional polycarbonate micelles for controlled release of amphotericin B

Ying Wang、Xiyu Ke、Zhi Xiang Voo 等 12 位作者2016-09-29Acta Biomaterialia

Amphotericin B (AmB), a poorly soluble and toxic antifungal drug, was encapsulated into polymeric micelles self-assembled from phenylboronic acid-functionalized polycarbonate/PEG (PEG-PBC) and urea-functionalized polycarbonate/PEG (PEG-PUC) diblock copolymers via hydrogen-bonding, boronate ester bond, and/or ionic int…

Polymer Surface Interaction StudiesAntimicrobial agents and applicationsNanoparticle-Based Drug Delivery

PVA/Carbon Dot Nanocomposite Hydrogels for Simple Introduction of Ag Nanoparticles with Enhanced Antibacterial Activity

Hu Meng、Xiaoyu Gu、Yang Hu 等 5 位作者2016-09-29Macromolecular Materials and Engineering

The introduction of nanomaterials to hydrogels is an effective way to improve the mechanical properties of hydrogels. Herein, carbon nanodot (C‐dot) as a new‐found excellent nanomaterial is first added to polyvinyl alcohol (PVA) hydrogel to prepare PVA/C‐dot hydrogel by freeze–thaw method. The appropriate size and ple…

Quantum Dots Synthesis And PropertiesCarbon and Quantum Dots ApplicationsGraphene and Nanomaterials Applications

Diphosphine-Protected Au22 Nanoclusters on Oxide Supports Are Active for Gas-Phase Catalysis without Ligand Removal

Zili Wu、Guoxiang Hu、De‐en Jiang 等 8 位作者2016-09-29Nano Letters

Investigation of atomically precise Au nanoclusters provides a route to understand the roles of coordination, size, and ligand effects on Au catalysis. Herein, we explored the catalytic behavior of a newly synthesized Au 22 (L 8 ) 6 nanocluster (L = 1,8-bis(diphenylphosphino) octane) with in situ uncoordinated Au site…

Nanocluster Synthesis and ApplicationsAdvanced Nanomaterials in Catalysis

Nodal superconductivity in FeS: Evidence from quasiparticle heat transport

Tianping Ying、Xiaofang Lai、Xiaochen Hong 等 10 位作者2016-09-29Physical review. B./Physical review. B

We report low-temperature heat transport measurements on superconducting iron sulfide FeS with ${T}_{c}\ensuremath{\approx}5$ K, which has the same crystal structure and similar electronic band structure to the superconducting iron selenide FeSe. In zero magnetic field, a significant residual linear term ${\ensuremath…

Rare-earth and actinide compoundsIron-based superconductors researchPhysics of Superconductivity and Magnetism

Experimental realization of type-II Weyl state in non-centrosymmetric TaIrTe$_4$

E. Haubold、K. Koepernik、D. Efremov 等 17 位作者2016-09-29arXiv

Recent breakthrough in search for the analogs of fundamental particles in condensed matter systems lead to experimental realizations of 3D Dirac and Weyl semimetals. Weyl state can be hosted either by non-centrosymmetric or magnetic materials and can be of the first or the second type. Several non-centrosymmetric mate…

Mesoscale and Nanoscale PhysicsMaterials Science

Microstructural Characteristics of Reaction-Bonded B4C/SiC Composite

Tianshi Wang、Chaoying Ni、Prashant Karandikar2016-09-29arXiv

A detailed microstructural investigation was performed to understand structural characteristics of a reaction-bonded B$_4$C/SiC ceramic composite. The state-of-the-art focused ion beam & scanning electron microscopy (FIB/SEM) and transmission electron microscopy (TEM) revealed that the as-fabricated product consisted…

Materials Science

Generation of Anisotropic Massless Dirac Fermions and Asymmetric Klein Tunneling in Few-Layer Black Phosphorus Superlattices

Zhenglu Li、Ting Cao、Meng Wu 等 4 位作者2016-09-29arXiv

Artificial lattices have been employed in many two-dimensional systems, including those of electrons, atoms and photons, in a quest for massless Dirac particles with flexibility and controllability. Periodically patterned molecule assembly and electrostatic gating as well as moiré pattern induced by substrate, have pr…

Materials Science

Thin layered drawing media probed by THz time-domain spectroscopy

J. Tasseva、A. Taschin、P. Bartolini 等 6 位作者2016-09-29arXiv

Dry and wet drawing materials were investigated by THz time-domain spectroscopy in transmission mode. Carbon-based and iron-gall inks have been studied, some prepared following ancient recipes and others using current synthetic materials; a commercial ink was studied as well. We measured the THz signals on thin film o…

physics.opticsSoft Condensed MatterMaterials Science

Spin polarization and attosecond time delay in photoemission from spin degenerate states of solids

Mauro Fanciulli、Henrieta Volfová、Stefan Muff 等 8 位作者2016-09-29arXiv

After photon absorption, electrons from a dispersive band of a solid require a finite time in the photoemission process before being photoemitted as free particles, in line with recent attosecondresolved photoemission experiments. According to the Eisenbud-Wigner-Smith model, the time delay is due to a phase shift of…

Materials ScienceMesoscale and Nanoscale Physics

Frictional sliding without geometrical reflection symmetry

Michael Aldam、Yohai Bar-Sinai、Ilya Svetlizky 等 6 位作者2016-09-29arXiv

The dynamics of frictional interfaces play an important role in many physical systems spanning a broad range of scales. It is well-known that frictional interfaces separating two dissimilar materials couple interfacial slip and normal stress variations, a coupling that has major implications on their stability, failur…

Soft Condensed Matterphysics.geo-phMaterials Science

Chebyshev polynomial filtered subspace iteration in the Discontinuous Galerkin method for large-scale electronic structure calculations

Amartya S. Banerjee、Lin Lin、Wei Hu 等 5 位作者2016-09-29arXiv

The Discontinuous Galerkin (DG) electronic structure method employs an adaptive local basis (ALB) set to solve the Kohn-Sham equations of density functional theory (DFT) in a discontinuous Galerkin framework. The adaptive local basis is generated on-the-fly to capture the local material physics, and can systematically…

Materials Sciencephysics.comp-ph

Enhanced electrocaloric cooling in ferroelectric single crystals by electric field reversal

Yang‐Bin Ma、Nikola Novak、Jurij Koruza 等 6 位作者2016-09-29Physical review. B./Physical review. B

An improved thermodynamic cycle is validated in ferroelectric single crystals, where the cooling effect of an electrocaloric refrigerant is enhanced by applying a reversed electric field. In contrast to the conventional adiabatic heating or cooling by on-off cycles of the external electric field, applying a reversed f…

Magnetic and transport properties of perovskites and related materialsFerroelectric and Piezoelectric MaterialsAcoustic Wave Resonator Technologies

Type-II Dirac fermions in the PtSe$_2$ class of transition metal dichalcogenides

Huaqing Huang、Shuyun Zhou、Wenhui Duan2016-09-29arXiv

Recently, a new "type-II" Weyl fermion, which exhibits exotic phenomena such as angle-dependent chiral anomaly, was discovered in a new phase of matter where electron and hole pockets contact at isolated Weyl points. [Nature \textbf{527}, 495 (2015)] This raises an interesting question whether its counterpart, i.e., t…

Materials ScienceMesoscale and Nanoscale Physics

Band-gap control in phosphorene/BN structures from first-principles calculations

Lukas Eugen Marsoner Steinkasserer、Simon Suhr、Beate Paulus2016-09-29Physical review. B./Physical review. B

Using both DFT as well as ${G}_{0}{W}_{0}$ calculations, we investigate static and dynamic effects on the phosphorene band gap upon deposition and encapsulation on/in BN multilayers. We demonstrate how competing long- and short-range effects cause the phosphorene band gap to increase at low $\mathrm{P}\text{\ensuremat…

MXene and MAX Phase MaterialsGraphene research and applications2D Materials and Applications

Band Gap Engineering of Two-Dimensional Nitrogene

Jiesen Li、Weiliang Wang、Dao‐Xin Yao2016-09-29Scientific Reports

In our previous study, we have predicted the novel two-dimensional honeycomb monolayers of pnictogen. In particular, the structure and properties of the honeycomb monolayer of nitrogen, which we call nitrogene, are very unusual. In this paper, we make an in-depth investigation of its electronic structure. We find that…

MXene and MAX Phase Materials2D Materials and ApplicationsGraphene research and applications

Ultra-stable 2D/3D hybrid perovskite photovoltaic module

Giulia Grancini、Cristina Roldán-Carmona、Iwan Zimmermann 等 7 位作者2016-09-29arXiv

Hybrid perovskite solar cells, with their power conversion efficiency (PCE) exceeding 22%, have been representing a revolutionary concept for future energy power generation. Although listed among the Top 10 Emerging Technologies of 2016, device longevity is the actual bottleneck for their real uptake in the market. He…

Materials ScienceMesoscale and Nanoscale Physics

Positive and negative electrocaloric effect inBaTiO3in the presence of defect dipoles

Yang‐Bin Ma、Anna Grünebohm、Kai‐Christian Meyer 等 5 位作者2016-09-29Physical review. B./Physical review. B

The influence of defect dipoles on the electrocaloric effect (ECE) in acceptor doped ${\mathrm{BaTiO}}_{3}$ is studied by means of lattice-based Monte-Carlo simulations using a Ginzburg-Landau type effective Hamiltonian. Oxygen vacancy-acceptor associates are described by fixed local dipoles with orientation parallel…

Multiferroics and related materialsFerroelectric and Piezoelectric MaterialsElectronic and Structural Properties of Oxides

Experimental calibration of a Cahn-Hilliard phase-field model for phase transformations in Li-Sn electrodes

Srivatsan Hulikal、Chun-Hao Chen、Eric Chason 等 4 位作者2016-09-29arXiv

Experiments, numerical simulations, and analytical calculations are used to calibrate a diffuse-interface Cahn-Hilliard model of Li-Sn thin film electrodes that experience a transformation from Sn to Li2Sn5. It is shown that a concentration-gradient dependent mobility can be used in the Cahn-Hilliard equation to give…

Materials Science

Prediction of superconducting iron-bismuth intermetallic compounds at high pressure

Maximilian Amsler、S. Shahab Naghavi、Chris Wolverton2016-09-29arXiv

The synthesis of materials in high-pressure experiments has recently attracted increasing attention, especially since the discovery of record breaking superconducting temperatures in the sulfur-hydrogen and other hydrogen-rich systems. Commonly, the initial precursor in a high pressure experiment contains constituent…

Chemical PhysicsMaterials ScienceSuperconductivityphysics.comp-ph