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1)  branched nanowires
分叉纳米线
2)  branched-CNTs
分叉碳纳米管
1.
Nano-NiO/straight-CNTs and Nano-NiO/branched-CNTs Composites and Their Effects on the Thermal Decomposition of Ammonium Perchlorate;
直形碳纳米管、分叉碳纳米管负载纳米NiO及其对高氯酸铵热分解的影响
3)  biforked nanotube
分叉纳米碳管
1.
It is shown that, yielding and fracture of biforked nanotube result from the "stress concentration" at the junctures of thin and thick nanotubes, and biforked carbon nanotubes has obviously lower tensile strength and toughness than straight nanotube has.
采用分子动力学方法,模拟了分叉纳米碳管与直纳米碳管的拉伸过程,对比、分析了分叉纳米碳管与直纳米碳管的拉伸力学性能。
4)  nanowires
纳米线
1.
PVA-Assisted Synthesis and Characterization of CdS Nanowires;
聚乙烯醇辅助合成CdS纳米线及其表征
2.
Study on size effect of melting temperature of Pb nanowires;
铅纳米线熔化温度的尺寸效应研究
3.
Technology for preparation of SnO_2 nanofilms and nanowires;
二氧化锡纳米薄膜和纳米线制备技术
5)  SiC nanowires
SiC纳米线
1.
Synthesis and characterization of SiC nanowires using silicon evaporation;
硅热蒸发法制备SiC纳米线及其结构表征
2.
Formation of SiC nanowires on SiO_2 substrate by magnetron sputtering and annealing;
石英衬底上磁控溅射SiC膜退火形成SiC纳米线
3.
SiC nanowires were found in crystallochemical analysis of SiBONC ceramic powder, which was synthesized through a polymer pyrolysis route from the raw materials of tetrachloride, phenyle aldehyde, boron trichloride and aniline.
在对SiBONC陶瓷粉末坯体进行高温气压处理时,发现在坯体表面生长出大量β-SiC纳米线。
6)  nanowire
纳米线
1.
Fabrication of GaN nanowires by ammoniating Ga_2O_3 film on V layer deposited on Si(111) substrates;
氨化Si基Ga_2O_3/V薄膜制备GaN纳米线
2.
Synthesis, Structure and Growth Mechanism of ZnS Nanowires with High Aspect Ratio;
大长径比ZnS纳米线的制备、结构和生长机理
3.
Self-assembly synthesis of conductive polypyrrole nanowire;
自组装法合成导电聚吡咯纳米线
补充资料:分叉
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性质: 当某个参数的值通过某个临界值时,有些非线性方程的解的数目会发生突然的变化。这种现象在数学中称为分岔(也称为分叉或分支)现象。它可以用来模拟物理化学系统从一种状态突变到另一种状态的现象。

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