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1)  NiTiO_3
NiTiO3
1.
Nickel titanate (NiTiO_3) nanorods with a diameter of 40~100nm and a length of 150~700nm have been prepared by gel-microemulsion chemical tailoring method.
用钛酸丁酯和NiCl2制备凝胶,以十二烷基硫酸钠(SDS)/正丁醇/正庚烷/水组成的四元微乳液体系对凝胶进行化学剪裁并用KBH4还原,然后在500℃下煅烧30min,得到了直径为40~100nm,长度为150~700nm 的纳米棒状NiTiO3
2)  ultrafine NiTiO 3 powder
超细NiTiO3
1.
Potential of ultrafine NiTiO 3 powder is determined and the effects of the dis persant (ammonium polyacrylate)on the viscosities of NiTiO 3 aqueous suspen sions are studied.
测定了超细NiTiO3粉体的ζ-电位,并研究了分散剂聚甲基丙烯酸铵(NH4PAA)的用量对NiTiO3悬浮体粘度的影响。
3)  nickel [英]['nɪkl]  [美]['nɪkḷ]
Ni
1.
Microwave absorbing properties of La_(0.8)Ba_(0.2)MnO_3/Ni/nickel nano-composite system;
纳米La_(0.8)Ba_(0.2)MnO_3/Ni粉复合体系的微波吸收性能
2.
Allocation,circulation and purifying effect of nickel in synthetic wastewater in Avicennia marina simulated wetland system;
模拟分析白骨壤湿地系统中Ni的分配循环及其净化效果
3.
Determination of Iron,Cobalt and Nickel as Chelates with 4-(2-Thiazolylazo)Resorcinol by Liquid Chromatography with Electrochemical Detection;
4-(2-氨基噻唑)-间苯二酚为柱前衍化剂液相色谱/电化学检测Fe、Co、Ni
4)  nickel(Ⅱ) nickel(Ⅱ)
Ni(Ⅱ)-Ni(Ⅱ)
5)  Ni powder
Ni粉
1.
The microstructure of sinter of Co powder and Ni powder formed during sintering was studied by OM,SEM,EDS and X-ray diffraction.
利用光学显微镜、扫描电镜、X射线衍射和能谱技术研究了Co粉和Ni粉固相烧结时形成的烧结体的微观形貌和相结构;并利用原子相图讨论了Co-Ni固溶体的形成机理、计算了该固溶体的电子密度。
2.
The effects of Co(OH) 2 and Ni powder added into nickel hydroxide electrode on its performance were studied by triangle wave potential sweeping, XRD and constant-current charging-discharging techniques.
采用三角波电位扫描、X射线衍射及恒流充放电曲线法研究了在氢氧化镍电极中添加Co( OH) 2 和 Ni粉后对电极性能的影响 。
3.
The effects of adding Ni powder,Co powder and improving the addition amount of CoO on the storage performance of Ni/MH battery were studied in the design of Ni/MH battery for HEV.
在HEV用MH/Ni电池的设计中,研究了添加Ni粉、Co粉及提高CoO的加入量对MH/Ni电池贮存性能的影响,结果表明:正极中加入较多的Ni粉或提高CoO的加入量均能够提高MH/Ni电池的贮存性能。
6)  Ni/Al powder
Ni/Al
1.
The analysis results show that this method can prepare the compact shell for Ni/Al powder.
在含氟离子的水溶液中,采用Al粉直接置换还原Ni盐的方法,实现了纳米Ni在Al粉表面上的快速化学沉积,制备出核-壳结构的Ni/Al复合粉末。
补充资料:染料细粉及超细粉
分子式:
CAS号:

性质:非水溶性染料或不易溶染料常采用的剂型。如分散染料、还原染料等对粒度及粒度分布均有一定要求,要求相对集中,过细、过粗,均对使用有不良影响。染料生产企业对本企业的产品均作了规定。这些染料产品一般多在2μm到上到4μm范围内,如对某些分散染料要求控制在1μm左右,分散性能4~5级,还原染料也与分散染料近似,故有超细粉之称。为使染料产品达到上述细度,常采用万能粉碎机或砂磨、球磨等进行粉碎。

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