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Preparation and Characteristics of Carbon Nanotubes Filled with Cobalt

Suwen Liu、Junjie Zhu、Yizhak Mastai 等 5 位作者2000-07-07Chemistry of Materials

Carbon nonotubes filled with long continuous cobalt nanorods or nanoparticles were synthesized by a simple catalytic process. Co(CO) 3 NO was used as the precursor and served as both the source for the carbon nanotubes and for the cobalt, the catalyst. Some nanotubes filled with nanorods have big heads. The Co-filled…

Carbon Nanotubes in CompositesGraphene research and applicationsConducting polymers and applications

Fracture energy of gels

Yoshimi Tanaka、Koji Fukao、Yoshihisa Miyamoto2000-07-07arXiv

To clarify effects of crack speed and cross-link density on fracture energy of acrylamide gels, we evaluated the roughness of the fracture surface and measured the fracture energy taking into account the roughness. The fracture energy increases linearly with crack speed $V$ in a fast crack speed region, and the increa…

Materials ScienceSoft Condensed Matter

Computer Simulation Studies of PEO/Layer Silicate Nanocomposites

E. Hackett、Evangelos Manias、E.P. Giannelis2000-07-07Chemistry of Materials

Monte Carlo and molecular dynamics computer simulations are used to explore the atomic scale structure and dynamics of intercalated PEO/montmorillonite nanocomposites. Particular attention is paid to the configuration of the polymer within these confined spaces. A layered, but disordered and liquid-like, structure is…

Advanced Battery Materials and TechnologiesPolymer Nanocomposites and PropertiesConducting polymers and applications

First Observation of Light-Induced Excited Spin State Trapping for an Iron(III) Complex

Shinya Hayami、Zhongze Gu、Motoo Shiro 等 6 位作者2000-07-07Journal of the American Chemical Society

ADVERTISEMENT RETURN TO ISSUEPREVCommunicationNEXTADDITION / CORRECTIONThis article has been corrected. View the notice.First Observation of Light-Induced Excited Spin State Trapping for an Iron(III) ComplexShinya Hayami, Zhong-ze Gu, Motoo Shiro, Yasuaki Einaga, Akira Fujishima, and Osamu SatoView Author Information…

Magnetism in coordination complexesLanthanide and Transition Metal ComplexesElectron Spin Resonance Studies

Phase Behavior of a Block Copolymer in Solvents of Varying Selectivity

Kenneth J. Hanley、Timothy P. Lodge、Ching‐I Huang2000-07-07OpenAlex

The effect of the thermodynamic selectivity of a solvent on the self-assembly of a styrene−isoprene (SI) diblock copolymer with block molecular weights of 1.1 × 10 4 and 2.1 × 10 4 g/mol is investigated. We explore the phase behavior from the melt state to dilute solution in solvents that are of varying selectivities…

Advanced Polymer Synthesis and CharacterizationSurfactants and Colloidal SystemsBlock Copolymer Self-Assembly

Solubility of Anthracene in Ternary Methyl tert-Butyl Ether + Alcohol + 2,2,4-Trimethylpentane Solvent Mixtures at 298.15 K

Karen J. Pribyla、Christopher Ezell、Tiffany T. Van 等 4 位作者2000-07-06Journal of Chemical & Engineering Data

Experimental solubilities are reported for anthracene dissolved in ternary methyl tert -butyl ether + 1-propanol + 2,2,4-trimethylpentane, methyl tert -butyl ether + 2-propanol + 2,2,4-trimethylpentane, methyl tert -butyl ether + 1-butanol + 2,2,4-trimethylpentane, methyl tert -butyl ether + 2-butanol + 2,2,4-trimethy…

Phase Equilibria and ThermodynamicsCrystallization and Solubility StudiesChemical and Physical Properties in Aqueous Solutions

Theoretical methods dealing with slow dynamics

Kyozi Kawasaki2000-07-06Journal of Physics Condensed Matter

The traditional strategy for dealing with slow dynamics is summarized. Direct application of this strategy to supercooled liquids and glasses gives rise to problems. Two types of reduced description, namely, microcanonical and canonical versions of dynamical density functional theories, are explained. The non-equilibr…

Material Dynamics and PropertiesTheoretical and Computational PhysicsAdvanced Thermodynamics and Statistical Mechanics

Thermodynamic picture of the glassy state

Th M Nieuwenhuizen2000-07-06Journal of Physics Condensed Matter

A picture for thermodynamics of the glassy state is introduced. It assumes that one extra parameter, the effective temperature, is needed to describe the glassy state. This explains the classical paradoxes concerning the Ehrenfest relations and the Prigogine-Defay ratio. As a second part, the approach connects the res…

Material Dynamics and PropertiesAdvanced Physical and Chemical Molecular InteractionsThermodynamic and Structural Properties of Metals and Alloys

Synthesis, Characterization, and Properties of a Lithium 21-Thiaporphyrin Complex

A. Gebauer、Joseph A. R. Schmidt、John Arnold2000-07-06Inorganic Chemistry

ADVERTISEMENT RETURN TO ISSUEPREVNoteNEXTSynthesis, Characterization, and Properties of a Lithium 21-Thiaporphyrin ComplexAndreas Gebauer, Joseph A. R. Schmidt, and John ArnoldView Author Information Department of Chemistry, University of California, Berkeley, California 94720 Cite this: Inorg. Chem. 2000, 39, 15, 342…

Metal complexes synthesis and propertiesMolecular Sensors and Ion DetectionPorphyrin and Phthalocyanine Chemistry

Stability of Solids-Coated Liquid Layers between Bubbles

Samim Ali、P.A. Gauglitz、W. R. Rossen2000-07-06Industrial & Engineering Chemistry Research

In principle, liquid layers between bubbles can be stabilized by a coating of fine solid particles even in the absence of surface-active agents in the liquid. Theoretical modeling of a two-dimensional liquid layer between bubbles containing one row of solid particles suggests that in three dimensions such a layer woul…

Fluid Dynamics and MixingFluid Dynamics and Heat TransferPickering emulsions and particle stabilization

Aging in a simple glass former

Walter Kob、Jean-Louis Barrat、Francesco Sciortino 等 4 位作者2000-07-06Journal of Physics Condensed Matter

Using molecular dynamics computer simulations we investigate the out-of-equilibrium dynamics of a Lennard-Jones system after a quench from a high temperature to one below the glass transition temperature. By studying the radial distribution function we obtain evidence that during the aging the system is very close to…

Material Dynamics and PropertiesTheoretical and Computational PhysicsThermodynamic properties of mixtures

Theoretical Investigation of the Effect of a Spin Transition on the Second-Order Molecular Hyperpolarizability of a Bis(salicylaldiminato)FeIISchiff Base Complex

Frédéric Averseng、Christine Lepetit、Pascal G. Lacroix 等 4 位作者2000-07-06Chemistry of Materials

The intermediate neglect of differential overlap-based (INDO-based) sum-over-states (SOS) perturbution theory and the density functional theory (DFT) are used to explore the effect of a spin-crossover phenomenon on the quadratic molecular NLO response ( β ) of an Fe II L complex in which the H 2 L ligand is obtained f…

Metal complexes synthesis and propertiesMagnetism in coordination complexesNonlinear Optical Materials Research

Dynamics of a supercooled polymer melt above the mode-coupling critical temperature: cage versus polymer-specific effects

J. Baschnagel、Christoph Bennemann、Wolfgang Paul 等 4 位作者2000-07-06Journal of Physics Condensed Matter

This paper reports results of molecular dynamics simulations for a glassy polymer melt consisting of short, non-entangled chains. The temperature region studied covers the supercooled state of the melt above the mode-coupling critical temperature. The analysis focuses on the interplay of simple-liquid and polymer-spec…

Material Dynamics and PropertiesTheoretical and Computational PhysicsRheology and Fluid Dynamics Studies

Random solids and random solidification: what can be learned by exploring systems obeying permanent random constraints?

Paul M Goldbart2000-07-06Journal of Physics Condensed Matter

In many interesting physical settings, such as the vulcanization of rubber, the introduction of permanent random constraints between the constituents of a homogeneous fluid can cause a phase transition to a random solid state. In this random solid state, particles are permanently but randomly localized in space, and a…

Material Dynamics and PropertiesTheoretical and Computational PhysicsComposite Material Mechanics

The jamming transition of granular media

Antonio Coniglio、Mario Nicodemi2000-07-06Journal of Physics Condensed Matter

A statistical mechanical approach to granular material is proposed. Using lattice models from standard statistical mechanics and results from a mean-field replica approach we find a jamming transition in granular media closely related to the glass transition in supercooled liquids. These models reproduce the logarithm…

Material Dynamics and PropertiesGranular flow and fluidized bedsAdvanced Physical and Chemical Molecular Interactions

The viscous slowing down of supercooled liquids as a temperature-controlled super-Arrhenius activated process: a description in terms of frustration-limited domains

Gilles Tarjus、Daniel Kivelson、Pascal Viot2000-07-06Journal of Physics Condensed Matter

We propose that the salient feature to be explained about the glass transition of supercooled liquids is the temperature-controlled super-Arrhenius activated nature of the viscous slowing down, more strikingly seen in weakly bonded, fragile systems. In the light of this observation, the relevance of simple models of s…

Material Dynamics and PropertiesTheoretical and Computational PhysicsAdvanced Physical and Chemical Molecular Interactions

Non-equilibrium mode-coupling theory for supercooled liquids and glasses

Arnulf Latz2000-07-06Journal of Physics Condensed Matter

A formally exact set of equations is derived for the description of non-equilibrium phenomena exhibited by classical liquids and glasses. With the help of a non-equilibrium projection operator formalism, the correlation functions and fluctuation propagators are expressed in terms of memory functions and time-dependent…

Material Dynamics and PropertiesTheoretical and Computational PhysicsSpectroscopy and Quantum Chemical Studies

Emergence of macroscopic temperatures in systems that are not thermodynamical microscopically: towards a thermodynamical description of slow granular rheology

Jorge Kurchan2000-07-06Journal of Physics Condensed Matter

A scenario for systems with slow dynamics is characterised by stating that there are several temperatures coexisting in the sample, with a single temperature shared by all observables at each (widely separate) time-scale. In preparation for the study of granular rheology, we show within this framework that glassy syst…

Material Dynamics and PropertiesGranular flow and fluidized bedsRheology and Fluid Dynamics Studies

Why is the density of inherent structures of a Lennard-Jones-type system Gaussian?

Andreas Heuer、Stephan Büchner2000-07-06Journal of Physics Condensed Matter

The thermodynamics of glass-forming systems can be expressed in terms of the density of inherent structures, which correspond to the minima of the potential energy landscape. In previous work this approach has been applied to Lennard-Jones-type systems, yielding a density of inherent structures which to a very good ap…

Phase Equilibria and ThermodynamicsMaterial Dynamics and PropertiesTheoretical and Computational Physics

Porous Siloxane Linked Phenylacetylene Nitrile Silver Salts from Solid State Dimerization and Low Polymerization

Y.-H. Kiang、Geoffrey B. Gardner、Stephen Lee 等 4 位作者2000-07-06Journal of the American Chemical Society

Three 3-fold symmetric rigid backbone phenylacetylene nitrile molecules have been prepared to which one to six hydroxy side chains have been attached. These molecules were cocrystallized with silver(I) trifluoromethanesulfonate (triflate) to form microcrystalline porous solids. X-ray powder data show that all three cr…

Metal-Organic Frameworks: Synthesis and ApplicationsLuminescence and Fluorescent MaterialsSupramolecular Self-Assembly in Materials