1)  γ-MnOOH
γ-MnOOH
1.
Synthesis of Prismatic Single Crystal γ-MnOOH;
方形γ-MnOOH单晶的水热法制备
2.
Synthesis of Ultralongγ-MnOOH andα-MnO_2 Submicro/nanowires via Hydrothermal Proceeding;
水热法合成超长γ-MnOOH和α-MnO_2亚微米/纳米线
3.
Initial adsorbate concentration effect on adsorption reversible /irreversible systems of Zn (Ⅱ) at δ-MnO_2 and γ-MnOOH Water Interface;
Zn(Ⅱ)在δ-MnO_2和γ-MnOOH两种矿物上吸附的初始溶质浓度效应
2)  γ-MnOOH nanorod
γ-MnOOH纳米棒
1.
The γ-MnOOH nanorods with tetragonal prism cross section were synthesized by the hydrothermal route at 160 ℃ through reacting KMnO4 with ethanol in the presence of different amounts of cationic surfactant cetyltrimethylammonium bromide(CTAB).
采用水热法,以十六烷基三甲基溴化铵(CTAB)为表面活性剂,在160℃的条件下,用乙醇还原KMnO4合成了四方柱γ-MnOOH纳米棒。
3)  γ-γ' coating
γ-γ'涂层
4)  γ/γ' interface
γ/γ'界面
5)  γ/γ' interface
γ/γ'相界
1.
By using the discrete variational Xα (DV-Xα) method, the electronic and bonding structures of γ/γ' interfaces with and without Ir addition in Ni-base single crystal superalloys were calculated in the framework of the first-principles theory.
采用非相对论第一原理分子轨道DV-Xα模型簇方法,计算了Ni基单晶超合金γ/γ'相界的电子结构,并从键重替聚居数(QAB)、界面原子层间的部分键合强度,以及界面原子局域环境总键合强度几个方面,对Ir合金化前后γ/γ'界面的结构稳定性、脆化特性、相间断裂的难易程度等几个方面对γ/γ'相界的结构特性进行了分析。
6)  γ/γ interfaces
γ/γ界面
参考词条
补充资料:(γ-γ′)反应
分子式:
CAS号:

性质:指γ光子与靶核作用,使其激发,然后以发射光子形式退激发的过程。出射光子的能量与受激靶核性质有关,为靶核激发态与基态这两个能级之差值。该反应截面很小,只有毫靶恩量级。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。