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Tuning Molecular Weights of Bombyx mori (B. mori) Silk Sericin to Modify Its Assembly Structures and Materials Formation

Mingying Yang、Yajun Shuai、Guanshan Zhou 等 6 位作者2014-07-22ACS Applied Materials & Interfaces

Bombyx mori (B. mori) silk sericin is a protein with features desirable as a biomaterial, such as increased hydrophilicity and biodegradation, as well as resistance to oxidation, bacteria, and ultraviolet light. In contrast to other widely studied B. mori silk proteins such as fibroin, sericin is still unexplored as a…

Electrospun Nanofibers in Biomedical ApplicationsSilk-based biomaterials and applicationsSilkworms and Sericulture Research

Thermal properties and miscibility of semi‐crystalline and amorphous PLA blends

Chengcheng Gao、Xianyang Bao、Long Yu 等 7 位作者2014-07-22Journal of Applied Polymer Science

ABSTRACT The focus of this research is the study of the microstructures and miscibility at the interface between semi‐crystalline and amorphous PLAs [poly ( l ‐lactic acid)(PLLA) with poly ( l , d ‐lactic acid)(PDLLA), respectively]. The blends are prepared through thermal processing (extrusion and hot‐pressing). To i…

Carbon dioxide utilization in catalysisbiodegradable polymer synthesis and propertiesAdditive Manufacturing and 3D Printing Technologies

Ultrafast Charge Transfer from CdSe Quantum Dots to p-Type NiO: Hole Injection vs Hole Trapping

Kaibo Zheng、Karel Žídek、Mohamed Abdellah 等 8 位作者2014-07-22The Journal of Physical Chemistry C

Semiconductor quantum dot (QD) to metal oxide electron injection dynamics is well documented in the scientific literature. In contrast to that, not much is known so far about hole injection time scales in such systems. The current study fills this gap. We investigate photocathodes consisting of CdSe QDs and p-type NiO…

Chalcogenide Semiconductor Thin FilmsGa2O3 and related materialsQuantum Dots Synthesis And Properties

Beyond Wenzel and Cassie–Baxter: Second-Order Effects on the Wetting of Rough Surfaces

Vahid Hejazi、Afsaneh Dorri Moghadam、Pradeep K. Rohatgi 等 4 位作者2014-07-22Langmuir

The Wenzel and Cassie-Baxter models are almost exclusively used to explain the contact angle dependence of the structure of rough and patterned solid surfaces. However, these two classical models do not always accurately predict the wetting properties of surfaces since they fail to capture the effect of many interacti…

Surface Modification and SuperhydrophobicityFluid Dynamics and Thin FilmsAdhesion, Friction, and Surface Interactions

pH sensitive polyelectrolyte complex micelles for highly effective combination chemotherapy

Thiruganesh Ramasamy、Jeong Hwan Kim、Jeong Hwan Kim 等 9 位作者2014-07-22Journal of Materials Chemistry B

The co-encapsulation of two or more drugs in the same carrier affords synergistic therapeutic effects and enhanced therapeutic potency. For this, polyethylene oxide-b-polyacrylic acid di-block polymer based-smart pH-sensitive di-block polyelectrolyte complex (PEC) micelles were designed to encapsulate mitoxantrone (MT…

Polymer Surface Interaction StudiesNanoparticle-Based Drug DeliveryDendrimers and Hyperbranched Polymers

Photoreduction and Stabilization Capability of Molecular Weight Fractionated Natural Organic Matter in Transformation of Silver Ion to Metallic Nanoparticle

Yongguang Yin、Mohai Shen、Xiaoxia Zhou 等 7 位作者2014-07-22Environmental Science & Technology

Photoinduced reduction of silver ion (Ag(+)) to silver nanoparticles (AgNPs) by dissolved organic matter (DOM) plays a crucial role in the transformation and transport of engineered AgNPs and Ag(+) in aquatic environments. DOM is a mixture of natural polymers with wide molecular weight (MW) distribution, and the roles…

Nanoparticles: synthesis and applicationsLaser-Ablation Synthesis of NanoparticlesTiO2 Photocatalysis and Solar Cells

Transfer, Transformation, and Impacts of Ceria Nanomaterials in Aquatic Mesocosms Simulating a Pond Ecosystem

Marie Tella、Auffan Mélanie、Lenka Brousset 等 13 位作者2014-07-22Environmental Science & Technology

Mesocosms are an invaluable tool for addressing the complex issue of exposure during nanoecotoxicological testing. This experimental strategy was used to take into account parameters as the interactions between the NPs and naturally occurring (in)organic colloids (heteroaggregation), or the flux between compartments o…

Geochemistry and Elemental AnalysisAdvanced Nanomaterials in CatalysisNanoparticles: synthesis and applications

Carbon‐Doped Boron Nitride Nanosheets with Ferromagnetism above Room Temperature

Chong Zhao、Zhi Xu、Hao Wang 等 7 位作者2014-07-22Advanced Functional Materials

The possibility to induce magnetism in light‐element materials that contain only s and p electrons is of fundamental and practical importance. Here, weak high‐temperature ferromagnetism is observed in carbon‐doped boron nitride (B‐C‐N) nanosheets. The bulk‐quantities of B‐C‐N nanosheets that are free of metallic impur…

Boron and Carbon Nanomaterials ResearchGraphene research and applications2D Materials and Applications

Significant Reduction of Graphene Thermal Conductivity by Phononic Crystal Structure

Lina Yang、Jie Chen、Nuo Yang 等 4 位作者2014-07-22arXiv

We studied the thermal conductivity of graphene phononic crystal (GPnC), also named as graphene nanomesh, by molecular dynamics simulations. The dependences of thermal conductivity of GPnCs on both length and temperature are investigated. It is found that the thermal conductivity of GPnCs is significantly lower than t…

Materials Science

First-principles study of configurational disorder inB4Cusing a superatom-special quasirandom structure method

Annop Ektarawong、S. I. Simak、Lars Hultman 等 5 位作者2014-07-22Physical Review B

Configurationally disordered crystalline boron carbide, with the composition ${\mathrm{B}}_{4}\mathrm{C}$, is studied using first-principles calculations. We investigate both dilute and high concentrations of carbon-boron substitutional defects. For the latter purpose, we suggest a superatom's picture of the complex s…

MXene and MAX Phase MaterialsBoron and Carbon Nanomaterials ResearchSuperconductivity in MgB2 and Alloys

Out- versus in-plane magnetic anisotropy of free Fe and Co nanocrystals: tight-binding and first-principles studies

Dongzhe Li、Cyrille Barreteau、Martin R. Castell 等 5 位作者2014-07-22arXiv

We report tight-binding (TB) and Density Function Theory (DFT) calculations of magnetocrystalline anisotropy energy (MAE) of free Fe (body centerd cubic) and Co (face centered cubic) slabs and nanocrystals. The nanocrystals are truncated square pyramids which can be obtained experimentally by deposition of metal on a…

Materials Science

Tuning of the hole spin relaxation time in single self-assembled In$_{1-x}$Ga$_x$As/GaAs quantum dots by electric field

Hai Wei、G-C Guo、Lixin He2014-07-22arXiv

We investigate the electric field tuning of the phonon-assisted hole spin relaxation in single self-assembled In$_{1-x}$Ga$_{x}$As/GaAs quantum dots, using an atomistic empirical pseudopotential method. We find that the electric field along the growth direction can tune the hole spin relaxation time for more than one…

Materials ScienceMesoscale and Nanoscale Physics

Optically Active Metasurface with Non-Chiral Plasmonic Nanoantennas

Amr M. Shaltout、Jingjing Liu、Vladimir M. Shalaev 等 4 位作者2014-07-22Nano Letters

We design, fabricate, and experimentally demonstrate an optically active metasurface of λ/50 thickness that rotates linearly polarized light by 45° over a broadband wavelength range in the near IR region. The rotation is achieved through the use of a planar array of plasmonic nanoantennas, which generates a fixed phas…

Metamaterials and Metasurfaces ApplicationsPlasmonic and Surface Plasmon ResearchAdvanced Antenna and Metasurface Technologies

Solid Solution Strengthening and Softening Due to Collective Nanocrystalline Deformation Physics

Timothy J. Rupert2014-07-22arXiv

Solid solution effects on the strength of the finest nanocrystalline grain sizes are studied with molecular dynamics simulations of different Cu-based alloys. We find evidence of both solid solution strengthening and softening, with trends in strength controlled by how alloying affects the elastic modulus of the mater…

Materials ScienceMesoscale and Nanoscale Physics

Emergence of localized plasticity and failure through shear banding during microcompression of a nanocrystalline alloy

Amirhossein Khalajhedayati、Timothy J. Rupert2014-07-22arXiv

Microcompression testing is used to probe the uniaxial stress-strain response of a nanocrystalline alloy, with an emphasis on exploring how grain size and grain boundary relaxation state impact the complete flow curve and failure behavior. The yield strength, strain hardening, strain-to-failure, and failure mode of na…

Mesoscale and Nanoscale PhysicsMaterials Science

Tracking Microstructure of Crystalline Materials: A Post-Processing Algorithm for Atomistic Simulations

Jason F. Panzarino、Timothy J. Rupert2014-07-22arXiv

Atomistic simulations have become a powerful tool in materials research due to the extremely fine spatial and temporal resolution provided by such techniques. In order to understand the fundamental principles which govern material behavior at the atomic scale and directly connect to experimental works, it is necessary…

Materials ScienceMesoscale and Nanoscale Physics

Strain localization in a nanocrystalline metal: Atomic mechanisms and the effect of testing conditions

Timothy J. Rupert2014-07-22arXiv

Molecular dynamics simulations are used to investigate strain localization in a model nanocrystalline metal. The atomic mechanisms of such catastrophic failure are first studied for two grain sizes of interest. Detailed analysis shows that the formation of a strain path across the sample width is crucial, and can be a…

Mesoscale and Nanoscale PhysicsMaterials Science

Low energy nuclear reactions driven by discrete breathers

Vladimir Dubinko2014-07-22arXiv

A new mechanism of LENR in solids is proposed, which is based on the large amplitude anharmonic lattice vibrations, a.k.a. intrinsic localized modes or discrete breathers (DBs). In particular, so called gap DBs, which can arise in diatomic crystals such as metal hydrides, are argued to be the LENR catalyzers. The larg…

Materials Science

Lattice swelling and modulus change in a helium-implanted tungsten alloy: X-ray micro-diffraction, surface acoustic wave measurements, and multiscale modelling

F. Hofmann、D. Nguyen-Manh、C. E. Beck 等 10 位作者2014-07-22arXiv

Using X-ray micro-diffraction and surface acoustic wave spectroscopy, we measure lattice swelling and elastic modulus changes in a W-1%Re alloy after implantation with 3110 appm of helium. A fraction of a percent observed lattice expansion gives rise to an order of magnitude larger reduction in the surface acoustic wa…

Materials Science

Microscale Motion Control Through Ferromagnetic Films

Andrea Benassi、Johannes Schwenk、Miguel A. Marioni 等 5 位作者2014-07-22arXiv

Actuation and control of motion in micro-mechanical systems are technological challenges, since they are accompanied by mechanical friction and wear, principal and well known sources of device lifetime reduction. In this theoretical work we propose a non-contact motion control technique based on the introduction of a…

Mesoscale and Nanoscale PhysicsMaterials Science