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Characterization of topological band structures away from the Fermi level by anomalous Nernst measurements

Jonathan Noky、Johannes Gooth、Claudia Felser 等 4 位作者2018-07-20arXiv

Resolving the structure of energy bands in transport experiments is a major challenge in condensed matter physics and material science. Sometimes, however, traditional electrical conductance or resistance measurements only provide very small signals, and thus limit the ability to obtain direct band structure informati…

Materials Science

The growth of metastable fcc Fe78Ni22 thin films on H-Si(100) substrates suitable for focused ion beam direct magnetic patterning

Jonas Gloss、Michal Horký、Viola Křižáková 等 7 位作者2018-07-20arXiv

We have studied the growth of metastable face-centered-cubic, non-magnetic Fe78Ni22 thin films on silicon substrates. These films undergo a magnetic (paramagnetic to ferromagnetic) and structural (fcc to bcc) phase transformation upon ion beam irradiation and thus can serve as a template for direct writing of magnetic…

Materials Science

Chiral Optical Response of Multifold Fermions

Felix Flicker、Fernando de Juan、Barry Bradlyn 等 6 位作者2018-07-20arXiv

Multifold fermions are generalizations of two-fold degenerate Weyl fermions with three-, four-, six- or eight-fold degeneracies protected by crystal symmetries, of which only the last type is necessarily non-chiral. Their low energy degrees of freedom can be described as emergent particles not present in the Standard…

Mesoscale and Nanoscale PhysicsStrongly Correlated ElectronsMaterials Science

Looking for new thermoelectric materials among the TMX intermetallics using high-throughput calculations

Celine Barreteau、Jean-Claude Crivello、Jean-Marc Joubert 等 4 位作者2018-07-20arXiv

Within 4 different crystal structures, 2280 ternary intermetallic configurations have been investigated via high-throughput density functional theory calculations in order to discover new semiconducting materials. The screening is restricted to intermetallics with the equimolar composition TMX, where T is a transition…

Materials Science

Magnetotransport in Sr3PbO antiperovskite with three-dimensional massive Dirac electrons

S. Suetsugu、K. Hayama、A. W. Rost 等 8 位作者2018-07-20arXiv

Novel topological phenomena are anticipated for three-dimensional (3D) Dirac electrons. The magnetotransport properties of cubic ${\rm Sr_{3}PbO}$ antiperovskite, theoretically proposed to be a 3D massive Dirac electron system, are studied. The measurements of Shubnikov-de Haas oscillations and Hall resistivity indica…

Strongly Correlated ElectronsMaterials Science

Transport measurements in twisted bilayer graphene: Electron-phonon coupling and Landau level crossing

Ting‐Fung Chung、Yang Xu、Yong P. Chen2018-07-20Physical review. B./Physical review. B

We investigate electronic transport in twisted bilayer graphene (tBLG) under variable temperatures ($T$), carrier densities ($n$), and transverse magnetic fields, focusing on samples with small twist angles (\ensuremath{\theta}). These samples show prominent signatures associated with the van Hove singularities (VHSs)…

Quantum and electron transport phenomenaTopological Materials and PhenomenaGraphene research and applications

Molecular tuning of the magnetic response in organic semiconductors

Erik R. McNellis、Sam Schott、Henning Sirringhaus 等 4 位作者2018-07-20Physical Review Materials

We demonstrate an extreme variability and tunability of the molecular gyromagnetic coupling $g$-tensor with respect to the geometric and electronic structure in a much studied class of organic semiconductors (OSCs). This class of OSCs is composed of a structural theme of phenyl- and chalcogenophene (group XVI element…

Organic Electronics and PhotovoltaicsOrganic and Molecular Conductors ResearchMagnetism in coordination complexes

Formation and dynamics of small polarons on the rutile TiO2(110) surface

Michele Reticcioli、Martin Setvín、Michael Schmid 等 5 位作者2018-07-20Physical review. B./Physical review. B

Charge trapping and the formation of polarons is a pervasive phenomenon in transition-metal oxide compounds, in particular at the surface, affecting fundamental physical properties and functionalities of the hosting materials. Here we investigate via first-principles techniques the formation and dynamics of small pola…

Gas Sensing Nanomaterials and SensorsElectronic and Structural Properties of OxidesCatalytic Processes in Materials Science

Enhanced stability of 2D organic-inorganic halide perovskites by doping and heterostructure engineering

Rahul Singh、Prashant Singh、Ganesh Balasubramanian2018-07-20arXiv

Organic-inorganic halide perovskite solar cells have recently attracted much attention due to their low-cost fabrication, flexibility, and high-power conversion efficiency. The reduction from three- to two-dimension (2D) promises an exciting opportunity to tune the electronic properties of organic-inorganic halide per…

Materials Science

Rational Design and Facile Synthesis of a Highly Tunable Quinoline-Based Fluorescent Small-Molecule Scaffold for Live Cell Imaging

Joomyung V. Jun、E. James Petersson、David M. Chenoweth2018-07-20Journal of the American Chemical Society

Small-molecule fluorescent probes are powerful tools for chemical biology; however, despite the large number of probes available, there is still a need for a simple fluorogenic scaffold, which allows for the rational design of molecules with predictable photophysical properties and is amenable to concise synthesis for…

Click Chemistry and ApplicationsMolecular Sensors and Ion DetectionLuminescence and Fluorescent Materials

Ultrathin Silver Film Electrodes with Ultralow Optical and Electrical Losses for Flexible Organic Photovoltaics

Guoqing Zhao、Wenfei Shen、Eunwook Jeong 等 11 位作者2018-07-20ACS Applied Materials & Interfaces

Improving the wetting ability of Ag on chemically heterogeneous oxides is technically important to fabricate ultrathin, continuous films that would facilitate the minimization of optical and electrical losses to develop qualified transparent Ag film electrodes in the state-of-the-art optoelectronic devices. This goal…

ZnO doping and propertiesTransition Metal Oxide NanomaterialsAdvanced Memory and Neural Computing

Thermal phonon engineering by tailored nanostructures

Masahiro Nomura、Junichiro Shiomi、Takuma Shiga 等 4 位作者2018-07-20Japanese Journal of Applied Physics

Abstract Phonon engineering is expected to contribute to further development of various fields and technologies such as electronics, photonics, thermal engineering, and materials science. Although phonons inherently exist in condensed matter, their behavior strongly depends on the scale of the system and the materials…

Thermal Radiation and Cooling TechnologiesAdvanced Thermoelectric Materials and DevicesThermal properties of materials

Enhanced superconductivity upon weakening of charge density wave transport in 2 H -TaS 2 in the two-dimensional limit

Yafang Yang、Shiang Fang、Valla Fatemi 等 9 位作者2018-07-20Physical review. B./Physical review. B

Layered transition-metal dichalcogenides that host coexisting charge-density wave (CDW) and superconducting orders provide ideal systems for exploring the effects of dimensionality on correlated electronic phases. Dimensionality has a profound effect on both superconductivity and CDW instabilities. Here we report a su…

Molecular Junctions and Nanostructures2D Materials and ApplicationsOrganic and Molecular Conductors Research

Investigation on the electrochemical performance of hausmannite Mn3O4 nanoparticles by ultrasonic irradiation assisted co-precipitation method for supercapacitor electrodes

R. Tholkappiyan、A. Nirmalesh Naveen、K. Vishista 等 4 位作者2018-07-20Journal of Taibah University for Science

Spinel type manganese oxide (Mn3O4) nanoparticles were synthesized by ultrasonic irradiation assisted co-precipitation method using PEG and NaOH. The formation of tetragonal hausmannite phase (Mn3O4) with spinel structure was confirmed from XRD and FTIR studies. The average crystallite size of Mn3O4 nanoparticles was…

Supercapacitor Materials and FabricationAdvancements in Battery MaterialsElectrodeposition and Electroless Coatings

A Flat Dual-Polarized Transformation-Optics Beamscanning Luneburg Lens Antenna Using PCB-Stacked Gradient Index Metamaterials

Yuanyan Su、Zhi Ning Chen2018-07-20IEEE Transactions on Antennas and Propagation

Based on a transformation optics method, a flat compact dual-polarized Luneburg lens antenna is proposed and implemented using the printed-circuit-board-stacked gradient-index metamaterials for beamscanning and multibeam applications at X-bands. The transformed material properties of the planar Luneburg lens are desig…

Metamaterials and Metasurfaces ApplicationsAntenna Design and AnalysisAdvanced Antenna and Metasurface Technologies

Non-hysteretic first-order phase transition with large latent heat and giant low-field magnetocaloric effect

F. Guillou、Arjun K. Pathak、Durga Paudyal 等 7 位作者2018-07-20Nature Communications

Abstract First-order magnetic transitions (FOMTs) with a large discontinuity in magnetization are highly sought in the development of advanced functional magnetic materials. Isosymmetric magnetoelastic FOMTs that do not perturb crystal symmetry are especially rare, and only a handful of material families, almost exclu…

Magnetic and transport properties of perovskites and related materialsAdvanced Condensed Matter PhysicsRare-earth and actinide compounds

Engineering Ni 3+ Cations in NiO Lattice at the Atomic Level by Li + Doping: The Roles of Ni 3+ and Oxygen Species for CO Oxidation

Xianglan Xu、Lin Li、Jin Huang 等 9 位作者2018-07-20ACS Catalysis

To investigate the Li + doping effect on the structure and reactivity of NiO, a series of NiO catalysts doped by Li + cations have been synthesized and probed by using CO oxidation as a model reaction. With a combination of experimental methods and DFT calculations, it has been revealed that the Li + cations preferent…

Catalysis and Oxidation ReactionsCatalytic Processes in Materials ScienceTransition Metal Oxide Nanomaterials

Aromatic Thiolate-Protected Series of Gold Nanomolecules and a Contrary Structural Trend in Size Evolution

Naga Arjun Sakthivel、Amala Dass2018-07-20Accounts of Chemical Research

Conspectus Thiolate-protected gold nanoparticles (AuNPs) are a special class of nanomaterials that form atomically precise NPs with distinct numbers of Au atoms ( n ) and thiolate (−SR, R = hydrocarbon tail) ligands ( m ) with molecular formula [Au n (SR) m ]. These are generally termed Au nanomolecules (AuNMs), nanoc…

Advanced Nanomaterials in CatalysisGold and Silver Nanoparticles Synthesis and ApplicationsNanocluster Synthesis and Applications

Anion-Dependent Doping and Charge Transport in Organic Electrochemical Transistors

Lucas Q. Flagg、Rajiv Giridharagopal、Jiajie Guo 等 4 位作者2018-07-20Chemistry of Materials

We study the effects of different electrolyte anions on the mixed ionic/electronic transport properties of organic electrochemical transistors (OECTs) based on poly(3-hexylthiophene-2,5-diyl). We show that the transport properties depend on the anion present in the electrolyte, with greater source-drain currents resul…

Advanced Sensor and Energy Harvesting MaterialsOrganic Electronics and PhotovoltaicsConducting polymers and applications

Facile Synthesis of Vanadium Metal‐Organic Frameworks for High‐Performance Supercapacitors

Yan Yan、Yuqing Luo、Jingyi Ma 等 6 位作者2018-07-20Small

Abstract Compared to traditional metal oxides, metal‐organic frameworks exhibit excellent properties, such as a high surface area, significant thermal stability, low density, and excellent electrochemical performance. Here, a simple process is proposed for the fabrication of rod‐like vanadium metal‐organic frameworks…

Supercapacitor Materials and FabricationPolyoxometalates: Synthesis and ApplicationsMetal-Organic Frameworks: Synthesis and Applications