1) La 0.8Ca 0.2MnO 3 nanowires
La0.8Ca0.2MnO3纳米线
2) 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
3) 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。
4) 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
5) ZnO nanowires
ZnO纳米线
1.
Field emission of MWCNT/ZnO nanowires composite film cathode;
MWCNT/ZnO纳米线复合阴极薄膜的场发射特性
2.
The growth of ZnO nanowires under electric field and field emission property;
ZnO纳米线在外加电场下的生长及场发射性能
3.
Study on the gas sensitivity property to alcohol of Ag doped ZnO nanowires;
Ag掺杂ZnO纳米线酒敏性能的研究
6) iron nanowires
铁纳米线
1.
A new method was presented for iron nanowires deposition in Anodic Aluminum Oxide(AAO)template by direct current.
本文提出了一种在多孔阳极氧化铝(Anodic Aluminum Oxide)模板中直接直流电沉积铁纳米线的新方法。
补充资料:Fast Red 4CA Base (阿克纳)
分子式:C7H9Cl2NO
分子量:194.05
CAS号:4274-03-7
性质:该品为针状晶体,熔点84℃。能溶于盐酸及硫酸水溶液,微溶于水。
制备方法:由2,5-二氯硝基苯用甲醇、氢氧化钠进行甲氧基化,再蒸出甲醇,用水稀释,进行沉降分离,然后和硫化钠还原,蒸馏,并用盐酸进行成盐反应而得。原料消耗(kg/t)2,5-二氯硝基苯(工业品) 1185甲醇(工业品) 337硫化碱(60%) 1550烧碱(100%) 453盐酸(31%) 1200食盐(工业品) 1580活性炭(工业品) 12
用途:主要用作棉、粘胶、丝和锦纶织物染色和印花的显色剂。也可作快色素和其他染料的中间体。
分子量:194.05
CAS号:4274-03-7
性质:该品为针状晶体,熔点84℃。能溶于盐酸及硫酸水溶液,微溶于水。
制备方法:由2,5-二氯硝基苯用甲醇、氢氧化钠进行甲氧基化,再蒸出甲醇,用水稀释,进行沉降分离,然后和硫化钠还原,蒸馏,并用盐酸进行成盐反应而得。原料消耗(kg/t)2,5-二氯硝基苯(工业品) 1185甲醇(工业品) 337硫化碱(60%) 1550烧碱(100%) 453盐酸(31%) 1200食盐(工业品) 1580活性炭(工业品) 12
用途:主要用作棉、粘胶、丝和锦纶织物染色和印花的显色剂。也可作快色素和其他染料的中间体。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条