Materials Literature

文献浏览

按标题、摘要、年份、主题和来源检索公开元数据。结果保留作者、摘要、分类与原始来源链接。

清除
第 147053 / 179392 页 · 当前展示 2,941,041–2,941,060 / 3,587,824 条匹配结果 · 摘要仅作预览

Plasmonic switching in Au functionalized GaN nanowires in the realm of surface plasmon polatriton propagation: A single nanowire switching device

Sandip Dhara、Chien-Yao Lu、Kuei-Hsien Chen2015-08-31arXiv

Photoresponse of Au nanoparticle functionalized semiconducting GaN (Au-GaN) nanowires is reported for an optical switching using 532 excitation. Wide band gap GaN nanowires are grown by catalyst assisted chemical vapour deposition technique and functionalized with Au in the chemical route. Au-GaN nanowires show surfac…

Mesoscale and Nanoscale PhysicsMaterials Science

Raoult's Formalism in Understanding Low Temperature Growth of GaN Nanowires using Binary Precursor

Kishore K. Madapu、S. Dhara、S. Amirthapandian 等 5 位作者2015-08-31arXiv

Growth of GaN nanowires are carried out via metal initiated vapor-liquid-solid mechanism, with Au as the catalyst. In chemical vapour deposition technique, GaN nanowires are usually grown at high temperatures in the range of 900-1100 ^oC because of low vapor pressure of Ga below 900 ^oC. In the present study, we have…

Materials Science

Invoking forbidden modes in SnO_2 nanoparticles using tip enhanced Raman spectroscopy

Venkataramana Bonu、A. Das、A. K. Sivadasan 等 5 位作者2015-08-31arXiv

Raman forbidden modes and surface defect related Raman features in SnO_2 nanostructures carry information about disorder and surface defects which strongly influence important technological applications like catalysis and sensing. Due to the weak intensities of these peaks, it is difficult to identify these features b…

Materials Science

Growth of InN quantum dots to nanorods: A competition between nucleation and growth rates

Kishore K. Madapu、Sandip Dhara、S. Polaki 等 5 位作者2015-08-31arXiv

Growth evolution of InN nanostructures via a chemical vapor deposition technique is reported using In_2O_3 as precursor material and NH_3 as reactive gas in the temperature range of 550-700 ^oC. Morphology of the nanostructures solely depends on the growth temperature, evolving from quantum dot sized nanoparticles to…

Materials Science

Direct Evidence of Mg Incorporation Pathway in Vapor-Liquid-Solid Grown p-type Nonpolar GaN Nanowires

Avinash Patsha、S. Amirthapandian、Ramanathaswamy Pandian 等 6 位作者2015-08-31arXiv

Doping of III-nitride based compound semiconductor nanowires is still a challenging issue to have a control over the dopant distribution in precise locations of the nanowire optoelectronic devices. Knowledge of the dopant incorporation and its pathways in nanowires for such devices is limited by the growth methods. We…

Materials Science

Growth and Characterization of Ce- Substituted Nd2Fe14B Single Crystals

M. A. Susner、B. S. Conner、B. I. Saparov 等 11 位作者2015-08-31arXiv

Single crystals of (Nd1-xCex)2Fe14B are grown out of Fe-(Nd,Ce) flux. Chemical and structural analysis of the crystals indicates that (Nd1-xCex)2Fe14B forms a solid solution until at least x = 0.38 with a Vegard-like variation of the lattice constants with x. Refinements of single crystal neutron diffraction data indi…

Materials ScienceStrongly Correlated Electrons

Synergistic effect of graphite nanoplatelets and carbon black in multifunctional EPDM nanocomposites

L. Valentini、S. Bittolo Bon、M. A. Lopez-Manchado 等 9 位作者2015-08-31arXiv

In this paper we adopt a processing technology to develop elastomer plus nano-graphite hybrid composites with multifunctional properties. Beyond the improvements of the mechanical properties, the research findings demonstrate the synergistic effect of carbon black and graphite nanoplatelets to prepare rubber composite…

Materials Science

Critical Delocalization of Chiral Zero Energy Modes in Graphene

Aires Ferreira、Eduardo R. Mucciolo2015-08-31Physical Review Letters

Graphene subjected to chiral-symmetric disorder is believed to host zero energy modes (ZEMs) resilient to localization, as suggested by the renormalization group analysis of the underlying nonlinear sigma model. We report accurate quantum transport calculations in honeycomb lattices with in excess of 10^{9} sites and…

Graphene research and applicationsNoncommutative and Quantum Gravity TheoriesTopological Materials and Phenomena

Porous Carbon Supports: Recent Advances with Various Morphologies and Compositions

Pengfei Zhang、Huiyuan Zhu、Sheng Dai2015-08-31ChemCatChem

Abstract The importance of porous carbon as the support material is well recognized in the catalysis community, and it would be even more attractive if several characteristics are considered, such as the stability in acidic and basic media or the ease of noble metal recovery through complete burn off. Because it is st…

Electrocatalysts for Energy ConversionCatalytic Processes in Materials ScienceNanomaterials for catalytic reactions

(InxGa1−x)2O3alloys for transparent electronics

Hartwin Peelaers、Daniel Steiauf、Joel B. Varley 等 5 位作者2015-08-31Physical Review B

In${}_{2}$O${}_{3}$ and Ga${}_{2}$O${}_{3}$ are both transparent conducting oxides with advantageous properties, but differing crystal structures. Alloying the two together could permit the tuning of materials properties such as band gaps, but raises the question of what the stable crystal structure would be. Using st…

ZnO doping and propertiesGa2O3 and related materialsGas Sensing Nanomaterials and Sensors

Nitrogen-Doped Porous Carbons As Electrode Materials for High-Performance Supercapacitor and Dye-Sensitized Solar Cell

Lan Wang、Zhiyong Gao、Jiuli Chang 等 8 位作者2015-08-31ACS Applied Materials & Interfaces

Activated N-doped porous carbons (a-NCs) were synthesized by pyrolysis and alkali activation of graphene incorporated melamine formaldehyde resin (MF). The moderate N doping levels, mesopores rich porous texture, and incorporation of graphene enable the applications of a-NCs in surface and conductivity dependent elect…

Advanced battery technologies researchSupercapacitor Materials and FabricationElectrochemical sensors and biosensors

Atomistic Origin of Brittle Failure of Boron Carbide from Large-Scale Reactive Dynamics Simulations: Suggestions toward Improved Ductility

Qi An、William A. Goddard2015-08-31Physical Review Letters

Ceramics are strong, but their low fracture toughness prevents extended engineering applications. In particular, boron carbide (B(4)C), the third hardest material in nature, has not been incorporated into many commercial applications because it exhibits anomalous failure when subjected to hypervelocity impact. To dete…

Diamond and Carbon-based Materials ResearchBoron and Carbon Nanomaterials ResearchIon-surface interactions and analysis

Lanthanide-doped upconversion nanoparticles

Marco Bettinelli、Luís D. Carlos、Xiaogang Liu2015-08-31Physics Today

A new class of nanomaterials that convert near-IR radiation into tunable visible light has important implications for many fields of science and technology.

Perovskite Materials and ApplicationsLuminescence Properties of Advanced MaterialsSolid State Laser Technologies

Efficient Excitonic Photoluminescence in Direct and Indirect Band Gap Monolayer MoS2

Alexander Steinhoff、Ji‐Hee Kim、F. Jahnke 等 10 位作者2015-08-31Nano Letters

We discuss the photoluminescence (PL) of semiconducting transition metal dichalcogenides on the basis of experiments and a microscopic theory. The latter connects ab initio calculations of the single-particle states and Coulomb matrix elements with a many-body description of optical emission spectra. For monolayer MoS…

MXene and MAX Phase MaterialsAdvanced biosensing and bioanalysis techniques2D Materials and Applications

Is NiCo2S4 Really a Semiconductor?

Chuan Xia、Peng Li、Appala Naidu Gandi 等 5 位作者2015-08-31Chemistry of Materials

NiCo 2 S 4 is a technologically important electrode material that has recently achieved remarkable performance in pseudocapacitor, catalysis, and dye-synthesized solar cell applications.1−5 Essentially, all reports on this material have presumed it to be semiconducting, like many of the chalcogenides, with a reported…

Supercapacitor Materials and FabricationChalcogenide Semiconductor Thin FilmsElectrocatalysts for Energy Conversion

Processing and properties of ZrC, ZrN and ZrCN ceramics: a review

R. W. Harrison、William Lee2015-08-31Advances in Applied Ceramics Structural Functional and Bioceramics

ZrC and ZrN ceramics are of interest in the application of materials in extreme high temperature environments, particularly for nuclear applications in generation IV reactors. These materials demonstrate desirable characteristics such as high thermal and electrical conductivities along with high hardness and melting t…

Advanced ceramic materials synthesisNuclear materials and radiation effectsNuclear Materials and Properties

Heavy-Metal Adsorption Behavior of Two-Dimensional Alkalization-Intercalated MXene by First-Principles Calculations

Jianxin Guo、Qiuming Peng、Hui Fu 等 5 位作者2015-08-31The Journal of Physical Chemistry C

The two-dimensional (2D) layered MXene (Ti 3 C 2 (OH) x F 2– x ) material can be alkalization intercalated to achieve heavy-metal ion adsorption. Herein the adsorption kinetics of heavy-metal ions and the effect of intercalated sites on adsorption have been interpreted by first-principles with density functional theor…

Graphene research and applications2D Materials and ApplicationsMXene and MAX Phase Materials

Reversible Size Control of Liquid‐Metal Nanoparticles under Ultrasonication

Akihisa Yamaguchi、Yu Mashima、Tomokazu Iyoda2015-08-31Angewandte Chemie International Edition

This paper describes the reversible control of the size of liquid-metal nanoparticles under ultrasonication. Gallium was utilized as a liquid metal, which has a melting point of 29.8 °C. Investigating the effects of ultrasonication (power, time, and temperature) on the formation of gallium nanoparticles revealed that…

Solar-Powered Water Purification MethodsGold and Silver Nanoparticles Synthesis and ApplicationsNanomaterials and Printing Technologies

Efficient Separation of Electron–Hole Pairs in Graphene Quantum Dots by TiO2 Heterojunctions for Dye Degradation

Dengyu Pan、Jinkai Jiao、Zhen Li 等 8 位作者2015-08-31OpenAlex

Water-soluble, single-crystalline, and amine-functionalized graphene quantum dots (GQDs) with absorption edge at ∼490 nm were synthesized by a molecular fusion method, and stably deposited onto anatase TiO 2 nanoparticles under hydrothermal conditions. The effective incorporation of the GQDs extends the light absorpti…

Quantum Dots Synthesis And PropertiesAdvanced Photocatalysis TechniquesCarbon and Quantum Dots Applications

Constructing Uniform Core–Shell PPy@PANI Composites with Tunable Shell Thickness toward Enhancement in Microwave Absorption

Chunhua Tian、Yunchen Du、Ping Xu 等 10 位作者2015-08-31OpenAlex

Highly uniform core-shell composites, polypyrrole@polyaniline (PPy@PANI), have been successfully constructed by directing the polymerization of aniline on the surface of PPy microspheres. The thickness of PANI shells, from 30 to 120 nm, can be well controlled by modulating the weight ratio of aniline and PPy microsphe…

Advanced Antenna and Metasurface TechnologiesElectromagnetic wave absorption materialsMetamaterials and Metasurfaces Applications