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1)  NiH 2
NiH2
1.
In the present paper, firstly, the electronic state and reasonable dissociation limits of NiH 2 are correctly determined based on group theory and atomic and molecular reaction statics.
应用群论及原子分子反应静力学方法推导了NiH2 分子基态的电子态及其离解极限 ,在MP2 /6 -311G 水平上 ,优化出NiH2 (X3 Δg)分子稳定构型为D∞h,其平衡核间距Re=0 。
2.
In this paper, firstly, the electronic state and its dissociation limit of NiH 2 are correctly determined based on group theory and atomic and molecular reaction statics.
应用群论及原子分子反应静力学方法推导了NiH2 的电子态及其离解极限 ,在MP2 / 6 311G 水平上 ,优化出NiH2 ( X 3Δg)分子稳定构型为D∞h,其平衡核间距Re=0 。
2)  LaH2 and NiH2
LaH2和NiH2
1.
Density functional theory B3LYP method with relativistic effective core potential and SDD basis for La and Ni atom has been used to optimize the structure and to calculate inter energy E,entropy S of LaH2 and NiH2 molecule.
在La和Ni原子相对论有效原子实势和基函数SDD下,使用密度泛函理论B3LYP方法计算得到LaH2和NiH2分子的结构、光谱数据、内能E、熵S等性质。
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:LAH
分子式:LiAlH4
分子量:37.95
CAS号:16853-85-3

性质:密度0.917。熔点125°C。闪点-17°C。水溶性Reacts。

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