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Ab Initio Studies of Polarization and Piezoelectricity in Vinylidene Fluoride and BN-Based Polymers
Article on ab initio studies of polarization and piezoelectricity in vinylidene fluoride and BN-based polymers.
Activation of water on the TiO2 (110) surface: The case of Ti adatoms
Article on the activation of water on the TiO2 (110) surface.
Ad-dimers on Strained Carbon Nanotubes: A New Route for Quantum Dot Formation?
Article on ad-dimers on strained carbon nano-tubes.
Band Engineering and Magnetic Doping of Epitaxial Graphene on SiC (0001)
Article on band engineering and magnetic doping of epitaxial graphene on SiC (0001).
Band Structure and Quantum Conductance of Nanostructures from Maximally Localized Wannier Functions: The Case of Functionalized Carbon Nanotubes
Article on band structure and quantum conductance of nanostructures from maximally localized Wannier functions.
Brittle and Ductile Behavior in Carbon Nanotubes
Article discussing research on the response of carbon nanotubes to a tensile load.
Charge transfer equilibria in ambient-exposed epitaxial graphene on (0001) 6 H-SiC
Article discussing research on charge transfer equilibria in ambient-exposed epitaxial graphene on (0001) 6 H-SiC.
Collision-Induced Interaction Cross Sections of 1-7 Mev Bâ‚‚ Ions Incident on an Nâ‚‚ Gas Target
This article describes the measurement of collision-induced interaction cross sections for 1-7 MeV diatomic boron molecular ions incident on a nitrogen gas target by using a differentially pumped gas cell.
Complex Materials for Molecular Spintronics Applications: Cobalt Bis(dioxolene) Valence Tautomers, from Molecules to Polymers
This article discusses complex materials for molecular spintronics applications.
Composition of Epoxy Resin, Aliphatic Amine Curing Agent and Halogenated Amine
Patent relating to the composition of epoxy resin, aliphatic amine curing agent and halogenated amine.
Dissociation of Water on Defective Carbon Substrates
Article on the dissociation of water on defective carbon substrates.
Dynamic Conductance of Carbon Nanotubes
Article on dynamic conductance of carbon nanotubes.
Edmonds et al. Reply
This article is a response to an article by M. Adell et al. [Phy. Rev. Lett. 94, 139701 (2005)] about semiconductor-based spintronics research.
Electric Field Induced Phase Transitions in Polymers: A Novel Mechanism for High Speed Energy Storage
This article discusses electric field induced phase transitions in polymers.
Electron transport properties of bilayer graphene
This article discusses electron transport properties of bilayer graphene.
Electronic and Transport Properties of Artificial Gold Chains
Article on electronic and transport properties of artificial gold chains.
Electronic properties of the graphene/6H-SiC(0001Ì… ) interface: A first-principles study
This article discusses electronic properties of the graphene/6H-SiC(0001Ì…) interface.
Erratum: First-Principles Theory of Correlated Transport through Nanojunctions [Phys. Rev. Lett. 94, 116802 (2005)]
This article provides the correction of an equation that was misprinted in Physical Review Letters 94, 116802 (2005).
First-Principles Theory of Correlated Transport through Nanojunctions
Article on the first-principles theory of correlated transport through nanojunctions.
Hexagon versus Trimer Formation in In Nanowires on Si(111): Energetics and Quantum Conductance
Article on hexagon versus trimer formation in In nanowires on Si(111).
Investigation of Structural and Optical Properties of Ag Nanoclusters Formed in Si(100) After Multiple Implantations of Low Energies Ag Ions and Post-Thermal Annealing at a Temperature Below the Ag-Si Eutectic Point
This paper investigates the synthesis of Ag NCs in Si(100) substrate by implanting multiple energies and fluences of Ag ions and subsequent thermal annealing.
Lip-Lip Interactions and the Growth of Multiwalled Carbon Nanotubes
Article on lip-lip interactions and the growth of multiwalled carbon nanotubes.
Mn Interstitial Diffusion in (Ga, Mn)As
This article describes a combined theoretical and experimental study of the ferromagnetic semiconductor (Ga, Mn)As which explains the remarkably lard changes observed on low-temperature annealing.
Multiple coexisting intercalation structures of sodium in epitaxial graphene-SiC interfaces
This article discusses multiple coexisting intercalation structures of sodium in peitaxial graphene-SiC interfaces.
On the mechanism for plasma hydrogenation of graphene
This article discusses the mechanism for plasma hydrogenation of graphene.
Onset of Ferrielectricity and the Hidden Nature of Nanoscale Polarization in Ferroelectric Thin Films
Article on the onset of ferrielectricity and the hidden nature of nanoscale polarization in ferroelectric thin films.
Phase Equilibria in High Energy Density PVDF-Based Polymers
Article on phase equilibria in high energy density PVDF-based polymers.
Phonon engineering in nanostructures: Controlling interfacial thermal resistance in multilayer-graphene/dielectric heterojunctions
Article discussing phonon engineering in nanostructures and controlling interfacial thermal resistance in multilayer-graphene/dielectric heterojunctions.
Phonon Softening and High-Pressure Low-Symmetry Phases of Cesium Iodide
Article on phonon softening and high-pressure low-symmetry phases of cesium iodide.
Process for Synthesizing Oil and Surfactant-free Hyaluronic Acid Nanoparticles and Microparticles
Patent relating to a process for synthesizing oil and surfactant-free hyaluronic acid nanoparticles and microparticles.
Unexpected Structures for Intercalation of Sodium in Epitaxial Graphene-SiC Interfaces
In this paper, the authors show using scanning tunneling microscopy, spectroscopy, and ab initio calculations that several intercalation structures exist for Na in epitaxial graphene on SiC(0001). Intercalation takes place at room temperature and Na electron-dopes the graphene. It intercalates in-between single-layer graphene and the carbon-rich interfacial layer. It also penetrates beneath the interfacial layer and decouples it to form a second graphene layer. This decoupling is accelerated by annealing and is verified by direct Na deposition onto the interface layer. The authors' observations show that intercalation in graphene is fundamentally different than in graphite and is a versatile means of electronic control.
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