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1.
Opt Express ; 28(11): 15855-15862, 2020 May 25.
Article in English | MEDLINE | ID: mdl-32549421

ABSTRACT

We use an ultrafast optical pump-probe spectroscopy to study quasiparticle (QP) dynamics in a topological insulator LaBi. Temperature-dependent optical measurements have been carried out, by which we observed nearly constant fast component (with a lifetime of 0.15 ps) and slow component (with a lifetime of 1.5 ps) for the whole range from 10 K to 295 K. The laser fluence dependence result shows that there is no saturation for the QP dynamics up to 3.3 mJ /cm2. Moreover, an Eg mode transverse optical (TO) coherent phonon has also been observed, with a frequency of 2.8 THz. Our results provide for the first time the ultrafast dynamics information of both the QPs and coherent phonons in a nodal line topological material.

2.
Knee Surg Sports Traumatol Arthrosc ; 18(4): 496-503, 2010 Apr.
Article in English | MEDLINE | ID: mdl-19855958

ABSTRACT

Injured articular cartilage has a poor capacity for spontaneous healing. So far, satisfactory solution to this subsistent problem has not been found, but transgenic therapy may be a promising way. This study aims to evaluate the effectiveness of a tissue-engineered cartilage that was transfected with morphogenetic protein 7 (BMP 7) in repairing the cartilaginous defects of rabbit knee joints. Chondrocytes were transfected with BMP-7 gene (5 x 10(6) cells/ml), inoculated into the collagen-fibrin gel scaffolds, and cultured for 14 days. Then, the scaffolds were implanted onto the created defects (5.0 mm in diameter) in rabbits' knee joints. After 12 weeks, the rabbits were sacrificed and histological sections were evaluated using modified O'Driscoll cartilage scores; In situ hybridization and immunohistochemistry were performed to detect the expression of BMP-7 mRNA and BMP-7 at the implanted site while the content of DNA and GAG was determined as well. A better quality of repairs was observed at the 12th week after implantation when compared to the control group using histological analyses. The content of DNA and specific secretion of GAG in the treatment group is statistically significant different compared with the control group. Gene therapy may be a promising treatment method, but the novel therapy approach needs further studies with respect to a longer follow-up period.


Subject(s)
Bone Morphogenetic Protein 7 , Cartilage, Articular/injuries , Cartilage, Articular/surgery , Chondrocytes/transplantation , Knee Injuries/surgery , Tissue Engineering/methods , Animals , Bone Morphogenetic Protein 7/genetics , Bone Morphogenetic Protein 7/therapeutic use , Disease Models, Animal , Follow-Up Studies , Glycosaminoglycans/analysis , Rabbits , Tissue Scaffolds , Transfection/methods , Treatment Outcome
3.
Nanotechnology ; 20(47): 475305, 2009 Nov 25.
Article in English | MEDLINE | ID: mdl-19875879

ABSTRACT

Carbon nanotube (CNT) ferroelectric field-effect transistors (FeFETs) with well-defined memory switch behaviors are promising for nonvolatile, nondestructive read-out (NDRO) memory operation and ultralow power consumption. Here, we report two-bit CNT-FeFET memories by assembling two top gates on individual nanotubes coated with ferroelectric thin films. Each bit of the nanotube transistor memory exhibits a controllable memory switching behavior induced by the reversible remnant polarization of the ferroelectric films, and its NDRO operation is demonstrated. The low driving voltage of 2 V, high carrier mobility over 1000 cm2 V(-1) s(-1), and potential ultrahigh integration density over 200 Gbit inch(-2) of the two-bit FeFET memory are highlighted in this paper.

4.
J Nanosci Nanotechnol ; 7(3): 1080-3, 2007 Mar.
Article in English | MEDLINE | ID: mdl-17450880

ABSTRACT

Field electron emission of GaN-filled carbon nanotubes, grown by microwave plasma enhanced chemical vapor deposition, was investigated. The detailed structural characterization shows that the filled nanotube has a GaN-core/C-shell structure, in which the GaN wire corresponds to a wurtzite structure. The field emission properties of the GaN-filled carbon nanotubes have been achieved with high and stable emission current. It is attributed to the unique cable-like structure, which makes the GaN-core/C-shell composite mechanically solid and chemically stable. This study suggests the GaN-filled carbon nanotube as an ideal candidate for future high-current and high-power field emitter applications.


Subject(s)
Gallium/chemistry , Nanotubes, Carbon/chemistry , Electrochemistry , Microscopy, Electron , Microscopy, Electron, Scanning , Microscopy, Electron, Scanning Transmission , Nanotechnology , Nanotubes, Carbon/ultrastructure , Powder Diffraction
5.
J Am Chem Soc ; 128(20): 6530-1, 2006 May 24.
Article in English | MEDLINE | ID: mdl-16704232

ABSTRACT

Direct synthesis of large-scale ternary boron carbonitride single-walled nanotubes (BCN-SWNTs) via a bias-assisted HFCVD process was presented. The BCN-SWNTs were grown over the powdery Fe-Mo/MgO catalyst by using CH4, B2H6, and ethylenediamine vapor as the reactant gases. As high as 16 atom % nitrogen can be incorporated within the nanotube shells, with the boron content in the range of 2-4 atom %. The ternary covalent bonding nature of the BCN-SWNTs was well characterized, and the B, C, and N elemental maps were clearly imaged by energy-filtered transmission electron microscopy.

6.
J Phys Chem B ; 110(2): 796-800, 2006 Jan 19.
Article in English | MEDLINE | ID: mdl-16471605

ABSTRACT

Uniform and well-crystallized beta-Ga2O3 nanowires are prepared by reacting metal Ga with water vapor based on the vapor-liquid-solid (VLS) mechanism. Electron microscopy studies show that the nanowires have diameters ranging from 10 to 40 nm and lengths up to tens of micrometers. The contact properties of individual Ga2O3 nanowires with Pt or Au/Ti electrodes are studied, respectively, finding that Pt can form Schottky-barrier junctions and Au/Ti is advantageous to fabricate ohmic contacts with individual Ga2O3 nanowires. In ambient air, the conductivity of the Ga2O3 nanowires is about 1 (Omega.m)-1, while with adsorption of NH3 (or NO2) molecules, the conductivity can increase (or decrease) dramatically at room temperature. The as-grown Ga2O3 nanowires have the properties of an n-type semiconductor.

7.
Phys Rev Lett ; 95(8): 086601, 2005 Aug 19.
Article in English | MEDLINE | ID: mdl-16196881

ABSTRACT

The electric transport properties of an individual vertical multiwall carbon nanotube (MWCNT) were studied in situ at room temperature in a scanning electron microscope chamber. It was found that the single MWCNT has a large current-carrying capacity, and the maximum current can reach 7.27 mA. At the same time, a very low resistance of about 34.4 ohms and a high conductance of about (460-490)G0 were obtained. The experimental observations imply a multichannel quasiballistic conducting behavior occurring in the MWCNTs with large diameter, which can be attributed to the participation of multiple walls in electrical transport and the large diameter of the MWCNTs.

8.
J Nanosci Nanotechnol ; 4(1-2): 35-51, 2004.
Article in English | MEDLINE | ID: mdl-15112540

ABSTRACT

A comprehensive understanding of the design, synthesis, characterization, and properties of boron carbonitride nanotubes (BCN) is presented in this review. Distinctive structural and electronic properties are revealed in theoretical studies of the BCN nanotubes and compared with the properties of carbon nanotubes. In the experimental studies, BCN nanotubes have been synthesized by various techniques. For different purposes, controllable growth processes have been used to fabricate BCN nanotubes with novel structures, such as nanojunctions and filled nanotubes. Some interesting phenomena originating from the substitution of B and N atoms, such as the phase segregation, are considered theoretically and experimentally. Mainly the physical properties--field electron emission and photoluminescence--are discussed, which turn out to have potential applications in the industry.


Subject(s)
Boron Compounds/chemistry , Boron Compounds/isolation & purification , Crystallization/methods , Luminescence , Nanotechnology/instrumentation , Nanotechnology/methods , Nanotubes/chemistry , Nanotubes/ultrastructure , Boron Compounds/chemical synthesis , Electric Conductivity , Electrochemistry/methods , Electromagnetic Fields , Materials Testing , Microscopy, Electron, Scanning , Molecular Conformation , Photochemistry/instrumentation , Photochemistry/methods , Surface Properties
9.
J Nanosci Nanotechnol ; 1(1): 55-8, 2001 Mar.
Article in English | MEDLINE | ID: mdl-12914032

ABSTRACT

Large-scale highly aligned boron carbonitride (BCN) nanofibers with controllable orientations and chemical compositions were synthesized directly on nickel substrates from a gas mixture of N2, H2, CH4, and B2H6 by plasma-enhanced hot filament chemical vapor deposition. The morphology of the BCN nanofibers was examined by scanning electron microscopy, the microstructures were studied by high-resolution transmission electron microscopy, and the bonding states as well as chemical compositions were determined by electron energy loss spectroscopy. To our knowledge, this is the first report on the photoluminescent properties of BCN nanofibers that shows that they are interesting blue- and violet-light-emitting materials with tunable wavelengths. Further studies on field electron emission suggest that BCN nanofibers are also promising candidates for field emission sources.


Subject(s)
Boron Compounds/chemistry , Boron Compounds/isolation & purification , Crystallization/methods , Luminescence , Nanotechnology/methods , Electric Conductivity , Electrochemistry/methods , Electromagnetic Fields , Materials Testing , Microscopy, Electron, Scanning , Molecular Conformation , Nanotechnology/instrumentation , Nickel/chemistry , Photochemistry/instrumentation , Photochemistry/methods , Surface Properties
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