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Original Multivalent Copper(II)-Conjugated Phosphorus Dendrimers and Corresponding Mononuclear Copper(II) Complexes with Antitumoral Activities

Nabil El Brahmi、Saı̈d El Kazzouli、Serge Mignani 等 10 位作者2013-02-14Molecular Pharmaceutics

Novel multivalent copper(II)-conjugated phosphorus dendrimers and their corresponding mononuclear copper(II) complexes were synthesized, characterized, and screened for antiproliferative activity against human cancer cell lines. Selected copper ligands were grafted on the surface of phosphorus dendrimers of generation…

Dendrimers and Hyperbranched PolymersRNA Interference and Gene DeliveryMetal complexes synthesis and properties

X-ray Photoelectron Spectroscopy: A Unique Tool To Determine the Internal Heterostructure of Nanoparticles

D. D. Sarma、Pralay K. Santra、Sumanta Mukherjee 等 4 位作者2013-02-14Chemistry of Materials

We review the existing literature on the application of X-ray photoelectron spectroscopy in the study of nanocrystals. The unique ability of this technique to provide quantitative and reliable descriptions of highly complex internal structures of a variety of nanocrystals has been discussed in detail. We show that an…

Chalcogenide Semiconductor Thin FilmsCopper-based nanomaterials and applicationsQuantum Dots Synthesis And Properties

High-Temperature Solution-Phase Syntheses of Metal-Oxide Nanocrystals

Jong Hun Lee、Sen Zhang、Shouheng Sun2013-02-14Chemistry of Materials

This review highlights the recent progress in synthesizing some representative metal-oxide nanocrystals (MONCs) with controlled magnetic, electronic, and optical properties for potentially important technological applications. It first introduces the synthesis of MONCs of magnetite (Fe 3 O 4 ), ferrite (MFe 2 O 4 ), a…

ZnO doping and propertiesQuantum Dots Synthesis And PropertiesCopper-based nanomaterials and applications

Atomistic spin dynamics of low-dimensional magnets

Lars Bergqvist、Andrea Taroni、Anders Bergman 等 5 位作者2013-02-14arXiv

We investigate the magnetic properties of a range of low-dimensional ferromagnets using a combination of first-principles calculations and atomistic spin dynamics simulations. This approach allows us to evaluate the ground state and finite temperature properties of experimentally well characterized systems such as Co/…

Materials Science

Low-bias electron transport properties of germanium telluride ultrathin films

Jie Liu、M. P. Anantram2013-02-14Journal of Applied Physics

The nanometer-scale size-dependent electronic transport properties of crystalline (c-) and amorphous (a-) germanium telluride (GeTe) ultrathin films sandwiched by titanium nitride (TiN) electrodes are investigated using ab initio molecular dynamics, density functional theory, and Green's function calculations. We find…

Advanced Semiconductor Detectors and MaterialsSemiconductor materials and interfacesPhase-change materials and chalcogenides

Superionic to superionic phase change in water: consequences for the interiors of Uranus and Neptune

Hugh F. Wilson、Michael L. Wong、Burkhard Militzer2013-02-14arXiv

Using density functional molecular dynamics free energy calculations, we show that the body-centered-cubic phase of superionic ice previously believed to be the only phase is in fact thermodynamically unstable compared to a novel phase with oxygen positions in fcc lattice sites. The novel phase has a lower proton mobi…

astro-ph.EPMaterials Science

Identification of long-lived clusters and their link to slow dynamics in a model glass former

Alex Malins、Jens Eggers、C. Patrick Royall 等 5 位作者2013-02-14The Journal of Chemical Physics

We study the relationship between local structural ordering and dynamical heterogeneities in a model glass-forming liquid, the Wahnström mixture. A novel cluster-based approach is used to detect local energy minimum polyhedral clusters and local crystalline environments. A structure-specific time correlation function…

Advanced Physical and Chemical Molecular InteractionsMaterial Dynamics and PropertiesLiquid Crystal Research Advancements

Dendrimer Nanoparticles for Ocular Drug Delivery

Siva P. Kambhampati、Rangaramanujam M. Kannan2013-02-14Journal of Ocular Pharmacology and Therapeutics

Eye is a unique organ of perfection and complexity, and is a microcosm of the body in many ways. It represents a great opportunity for nanomedicine, since it is readily accessible-allowing for direct drug/gene delivery to maximize the therapeutic effect and minimize side effects. The development of appropriate deliver…

Corneal Surgery and TreatmentsRNA Interference and Gene DeliveryDendrimers and Hyperbranched Polymers

Fabrication of silicon nanocrystals using sequential Au ion implantation

Gayatri Sahu、Rajesh Kumar、D. P. Mahapatra2013-02-14arXiv

Silicon nanocrystals are produced using a two-stage gold ion implantation technique. First stage implantation using low energy ions leads to the formation of an amorphous Si (a-Si) layer. A subsequent high energy Au irradiation in the second stage is found to produce strained Si NCs. An annealing at a temperature as l…

Mesoscale and Nanoscale PhysicsMaterials Science

Superhydrophobic Hybrid Inorganic–Organic Thiol-ene Surfaces Fabricated via Spray-Deposition and Photopolymerization

Bradley J. Sparks、Ethan F. T. Hoff、Li Xiong 等 5 位作者2013-02-14ACS Applied Materials & Interfaces

We report a simple and versatile method for the fabrication of superhydrophobic inorganic-organic thiol-ene coatings via sequential spray-deposition and photopolymerization under ambient conditions. The coatings are obtained by spray-deposition of UV-curable hybrid inorganic-organic thiol-ene resins consisting of pent…

Advanced Sensor and Energy Harvesting MaterialsAdhesion, Friction, and Surface InteractionsSurface Modification and Superhydrophobicity

White organic light-emitting diodes: Status and perspective

Sebastian Reineke、Michael Thomschke、Björn Lüssem 等 4 位作者2013-02-14arXiv

White organic light-emitting diodes (OLEDs) are ultra-thin, large-area light sources made from organic semiconductor materials. Over the last decades, much research has been spent on finding the suitable materials to realize highly efficient monochrome and white OLEDs. With their high efficiency, color-tunability, and…

physics.opticsChemical PhysicsMaterials Science

The nitrogen-vacancy colour centre in diamond

Marcus W. Doherty、Neil B. Manson、Paul Delaney 等 6 位作者2013-02-14arXiv

The nitrogen-vacancy (NV) colour centre in diamond is an important physical system for emergent quantum technologies, including quantum metrology, information processing and communications, as well as for various nanotechnologies, such as biological and sub-diffraction limit imaging, and for tests of entanglement in q…

Materials Science

Hot electron transport in a strongly correlated transition-metal oxide

Kumari Gaurav Rana、Takeaki Yajima、Subir Parui 等 8 位作者2013-02-14Scientific Reports

Oxide heterointerfaces are ideal for investigating strong correlation effects to electron transport, relevant for oxide-electronics. Using hot-electrons, we probe electron transport perpendicular to the La₀.₇Sr₀.₃MnO₃ (LSMO)- Nb-doped SrTiO₃ (Nb:STO) interface and find the characteristic hot-electron attenuation lengt…

Magnetic and transport properties of perovskites and related materialsElectronic and Structural Properties of OxidesAdvanced Condensed Matter Physics

Ohmic Contact Formation Between Metal and AlGaN/GaN Heterostructure via Graphene Insertion

Pil Sung Park、Kongara M. Reddy、Digbijoy N. Nath 等 6 位作者2013-02-14arXiv

A simple method for the creation of Ohmic contact to 2-D electron gas (2DEG) in AlGaN/GaN high electron-mobility transistors (HEMTs) using Cr/Graphene layer is demonstrated. A weak temperature dependence of this Ohmic contact observed in the range 77 to 300 K precludes thermionic emission or trap-assisted hopping as p…

Materials Science

Molecular beam epitaxy of high structural quality Bi2Se3 on lattice matched InP(111) substrates

S. Schreyeck、N. V. Tarakina、G. Karczewski 等 10 位作者2013-02-14arXiv

Epitaxial layers of the topological insulator Bi2Se3 have been grown by molecular beam epitaxy on laterally lattice-matched InP(111)B substrates. High resolution X-ray diffraction shows a significant improvement of Bi2Se3 crystal quality compared to layers deposited on other substrates. The measured full width at half…

Materials Science

Formation of one-dimensional self-assembled silicon nanoribbons on Au(110)-(2x1)

Mohamed Rachid Tchalal、Hanna Enriquez、Andrew J. Mayne 等 13 位作者2013-02-14arXiv

We report results on the self-assembly of silicon nanoribbons on the (2x1) reconstructed Au(110) surface under ultra-high vacuum conditions. Upon adsorption of 0.2 monolayer (ML) of silicon the (2x1) reconstruction of Au(110) is replaced by an ordered surface alloy. Above this coverage a new superstructure is revealed…

Materials Science

Progress in organic single-crystal field-effect transistors

Ignacio Gutiérrez Lezama、Alberto F. Morpurgo2013-02-14arXiv

Research on organic thin-film transistors tends to focus on improvements in device performance, but very little is understood about the ultimate limits of these devices, the microscopic physical mechanisms responsible for their limitations, and, more generally, the intrinsic transport properties of organic semiconduct…

Materials Science

Extensions of the time-dependent density functional based tight-binding approach

A. Domínguez、B. Aradi、T. Frauenheim 等 5 位作者2013-02-14arXiv

The time-dependent density functional based tight-binding (TD-DFTB) approach is generalized to account for fractional occupations. In addition, an on-site correction leads to marked qualitative and quantitative improvements over the original method. Especially, the known failure of TD-DFTB for the description of σ-> π…

Chemical PhysicsMaterials Science

From Layers to Nanotubes: Transition Metal Disulfides TMS2

Nourdine Zibouche、Agnieszka Kuc、Thomas Heine2013-02-14arXiv

MoS2 and WS2 layered transition-metal dichalcogenides are indirect band gap semiconductors in their bulk forms. Thinned to a monolayer, they undergo a transition and become direct band gap materials. Layered structures of that kind can be folded to form nanotubes. We present here the electronic structure comparison be…

Materials Science

Square-lattice magnetism of diaboleite Pb2Cu(OH)4Cl2

Alexander A. Tsirlin、Oleg Janson、Stefan Lebernegg 等 4 位作者2013-02-14arXiv

We report on the quasi-two-dimensional magnetism of the natural mineral diaboleite Pb2Cu(OH)4Cl2 with a tetragonal crystal structure, which is closely related to that of the frustrated spin-1/2 magnet PbVO3. Magnetic susceptibility of diaboleite is well described by a Heisenberg spin model on a diluted square lattice…

Strongly Correlated ElectronsMaterials Science