作者信息未提供2013-11-05Cambridge University Press eBooks
Capturing the most up-to-date research in colloidal quantum dot (CQD) devices, this book is written in an accessible style by the world's leading experts. The application of CQDs in solar cells, photodetectors and light-emitting diodes (LEDs) has developed rapidly over recent years, promising to transform the future o…
Quantum Dots Synthesis And Properties
Lei Zhang、Yecheng Li、Jimmy C. Yu2013-11-05Journal of Materials Chemistry B
Chemically modified inorganic nanoparticles (NPs) hold great promise for biomedical applications. In this review, we examine the recent advances in nanotechnology for targeted drug delivery and controlled drug release. The development of an effective drug delivery system requires good understanding of the chemical and…
Nanoplatforms for cancer theranosticsGraphene and Nanomaterials ApplicationsNanoparticle-Based Drug Delivery
Christian Hahn、Grégoire de Loubens、Michel Viret 等 6 位作者2013-11-05arXiv
We report electrical detection of the dynamical part of the spin pumping current emitted during ferromagnetic resonance (FMR) using the inverse Spin Hall Effect (ISHE). The experiment is performed on a YIG$|$Pt bilayer. The choice of YIG, a magnetic insulator, ensures that no charge current flows between the two layer…
Materials ScienceMesoscale and Nanoscale Physics
John Willis2013-11-05arXiv
The reasoning is a slight extension of that employed in my article [1] and its further development [2]. A formal solution to the title problem is presented for a general periodic laminate and its application for the construction of "effective constitutive relations" is developed. Its implementation in detail will be r…
physics.class-phMaterials Science
John Willis2013-11-05arXiv
The main purpose of this work is to address the question of the utility of "effective constitutive relations" for problems in dynamics. This is done in the context of longitudinal shear waves in an elastic medium that is periodically laminated, with attention restricted to plane waves propagating in the direction norm…
Materials Science
Karoly Nemeth、George Srajer2013-11-05arXiv
We present theoretical analysis on why and how rechargeable metal-air type batteries can be made significantly safer and more practical by utilizing CO2/oxalate conversions instead of O2/peroxide or O2/hydroxide ones, in the positive electrode. Metal-air batteries, such as the Li-air one, may have very large energy de…
Chemical PhysicsMaterials Science
Moshe Schechter、P. C. E. Stamp2013-11-05Physical Review B
The low-temperature universal properties in disordered and amorphous solids are considered. We introduce a model that includes two types of two-level systems (TLSs), which, based on their local symmetry, interact weakly or strongly with the phonon field. This accounts well for the experimental results and addresses so…
Theoretical and Computational PhysicsHigh-pressure geophysics and materialsMaterial Dynamics and Properties
Warrick G. Farr、Daniel L. Creedon、Maxim Goryachev 等 5 位作者2013-11-05arXiv
Progress in the emerging field of engineered quantum systems requires the development of devices that can act as quantum memories. The realisation of such devices by doping solid state cavities with paramagnetic ions imposes a trade-off between ion concentration and cavity coherence time. Here, we investigate an alter…
Materials Science
Weiwei Xing、Xing-Qiu Chen、Gang Lu 等 5 位作者2013-11-05arXiv
Interaction between hydrogen (H) and metals is central to many materials problems of scientific and technological importance. Chief among them is the development of H storage and H-resistant materials. H segregation or trapping at lattice defects, including vacancies, dislocations, grain boundaries, etc, plays a cruci…
Materials Science
Viviana P. Ramunni2013-11-05arXiv
Impurity diffusion coefficients are entirely obtained from a low cost classical molecular statics technique (CMST). In particular, we show how the CMST is appropriate in order to describe the impurity diffusion behavior mediated by a vacancy mechanism. In the context of the five-frequency model, CMST allows to calcula…
Materials Science
K. Ramesh Babu、G. Vaitheeswaran2013-11-05arXiv
We report a detailed first principles study on the structural, elastic, vibrational and thermodynamic properties of layered structure energetic alkali metal azides KN$_3$ and RbN$_3$. All the calculations were carried out by means of plane wave pseudopotential method with and without including van der Waals interactio…
Materials Science
S. K. Karna、Y. K. Vohra、P. Kung 等 4 位作者2013-11-05arXiv
Boron-doped single crystal diamond films were grown homoepitaxially on synthetic (100) Type Ib diamond substrates using microwave plasma assisted chemical vapor deposition. A modification in surface morphology of the film with increasing boron concentration in the plasma has been observed using atomic force microscopy…
Materials Science
G. Tkachov2013-11-05Physical Review B
The paper examines weak localization (WL) of surface states with a quadratic band crossing in topological crystalline insulators. It is shown that the topology of the quadratic band crossing point dictates the negative sign of the WL conductivity correction. For the surface states with broken time-reversal symmetry, a…
Topological Materials and PhenomenaAdvanced Condensed Matter PhysicsGraphene research and applications
Yong Pu、P. M. Odenthal、R. Adur 等 10 位作者2013-11-05arXiv
The use of the spin Hall effect and its inverse to electrically detect and manipulate dynamic spin currents generated via ferromagnetic resonance (FMR) driven spin pumping has enabled the investigation of these dynamically injected currents across a wide variety of ferromagnetic materials. However, while this approach…
Materials Science
K. Ramesh Babu、G. Vaitheeswaran2013-11-05arXiv
Structural stability and vibrational properties of KN$_3$ have been studied under pressure using the first principles calculations based on the density functional theory (DFT) as well as with semi empirical dispersion correction to the DFT to treat van der Waals interactions. The structural properties calculated throu…
Materials Science
Shengjun Yuan、Fengping Jin、Rafael Roldán 等 5 位作者2013-11-05Physical Review B
The excitation spectrum and the collective modes of graphene antidot lattices (GALs) are studied in the context of a $\ensuremath{\pi}$-band tight-binding model. The dynamical polarizability and dielectric function are calculated within the random-phase approximation. The effect of different kinds of disorder, such as…
Plasmonic and Surface Plasmon ResearchQuantum and electron transport phenomenaGraphene research and applications
Syed K. H. Gulrez、M. E. Ali Mohsin、Hamid Shaikh 等 8 位作者2013-11-05Polymer Composites
Conductive plastics are new generation functional materials with potential application in electronics, space and aviation industries. Polypropylene (PP) and polyethylene (PE) being most common, widely available and cheapest thermoplastic, if made conductive, can be revolutionary in the field of engineering thermoplast…
Carbon Nanotubes in CompositesNatural Fiber Reinforced CompositesElectromagnetic wave absorption materials
Debashish Mukherji、Kurt Kremer2013-11-05Macromolecules
Conformational transitions of (bio)macromolecules in aqueous mixtures are intimately linked to local concentration fluctuations of different solvent components. Though computer simulations are ideally suited to investigate such phenomena, in conventional setups the excess of one cosolvent close to the solute leads to…
NMR spectroscopy and applicationsProtein Structure and DynamicsMaterial Dynamics and Properties
Klaus Boldt、Nicholas Kirkwood、Gary Beane 等 4 位作者2013-11-05Chemistry of Materials
We report a facile and robust synthesis of Cd x Zn 1– x S graded shells on CdSe nanoparticles that are prepared by interface alloying between CdS and ZnS shells at elevated temperatures. Alloying provides systematic control over the electronic structure and enables switching between Type-I and quasi -Type-II configura…
Quantum Dots Synthesis And PropertiesChalcogenide Semiconductor Thin FilmsNanocluster Synthesis and Applications
Shunhong Zhang、Qian Wang、Yoshiyuki Kawazoe 等 4 位作者2013-11-05Journal of the American Chemical Society
Boron nitride (BN) and carbon are chemical analogues of each other and share similar structures such as one-dimensional nanotubes, two-dimensional nanosheets characterized by sp(2) bonding, and three-dimensional diamond structures characterized by sp(3) bonding. However, unlike carbon which can be metallic in one, two…
Boron and Carbon Nanomaterials ResearchMXene and MAX Phase MaterialsGraphene research and applications