1、

The CoFe 2 O 4 nanowire arrays have been prepared in AAO templates by sol-gel method.

用多孔氧化铝膜为模板,采用溶胶 - 凝胶法制备了钴铁氧体的纳米线阵列.

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2、

The results show the CoPt alloy nanowire arrays are fcc structure.

结果表明,CoPt合金纳米线是以fcc结构存在.

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3、

In 2003, he initiated a research work on Si nanowire field effect transistor.

年开始奈米矽管场效电晶体的研制.

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4、

Individual sodium titanate nanowire-based device is fabricated via e-beam lithography techniques.

利用电子束光刻技术制作了基于钛酸钠纳米线的纳米器件.

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5、

The magnetic ordered Ni nanowire arrays have attracted much attention because of potentialdensity perpendicular magnetic recording.

单晶镍纳米线阵列具有较强的磁各向异性,主要是由形状各向异性引起的.

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6、

The growth mechanisms of W 18 O 49 nanowire arrays and molybdenum nanowires have been intensively studied, respectively.

我们重点研究了W18O49纳米线阵列和单质钼纳米线的生长机理.

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7、

In-situ field electron emission measurement has been conducted on individual zinc oxide nanowire.

原位研究了单根氧化锌纳米线的场致电子发射性能.

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8、

Optimal CdS/ ZnO nanowire heterojunction ( depositing CdS 50 times on 2 microns-length ZnO nanowire array) was achieved and applied to I/ I3-electrolyte system eventually. The cell photoelectric conversion efficiency was 0.51%.

将CdS/ZnO纳米线异质结构进行优化,最终将其应用于I-/I3-电解质体系制成沉积50次的硫化镉薄层敏化长度为2微米的氧化锌纳米线阵列的电池,获得0.51%的光电转换效率。

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9、

Molecular Dynamic Simulations of Compressing Behavior of an Aurum Nanowire Encapsulated in a Carbon Nanotube

金纳米线嵌入碳纳米管压缩行为的分子动力学模拟

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10、

ZnS nanorod/ PbS nanoparticle heterostructures were obtained in dodecyl mercaptan, ZnO nanowire/ Pb nanoparticle heterostructures in air and argon gas mixture and ZnO nanorod/ PbO dumbbell heterostructures in air.

其中在十二硫醇中得到ZnS纳米棒/PbS纳米颗粒的异质结构,在空气和氩气的混合气体中得到ZnO纳米线/Pb纳米颗粒的异质结构,在空气中得到了ZnO纳米棒/PbO的哑铃状纳米复合结构。

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11、

Controlled Synthesis and Doping of Single-Crystalline 6H-SiC Nanowire and Its Optic Properties

单晶6H-SiC纳米线的可控掺杂及光学特性

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12、

The elastic modulus of the surface layer does not change with a decreasing nanowire size whereas the elastic modules of core layer decrease with a decreasing wire size, leading to the fact that the overall elastic modulus of nanowires decreases as the diameter decreases.

结果表明,金属纳米线的弹性模量具有尺度效应,随着直径减小,整体弹性模量减小,主要是因为核心层弹性模量减小,表面层弹性模量变化不大。

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