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1)  rare-earth-doped calcium fluoride
掺稀土氟化钙
2)  rare earth fluoride
氟化稀土
1.
Determination of Al in Rare Earth Fluoride by ICP-AES
ICP-AES测定氟化稀土中铝
2.
In this paper, the study has been made on determining Cl - content in rare earth fluoride The method can determine 0 005% Cl -,its RSD ( relative standard deviation )is 9 30% The method is quick and accurate The method has been applied to the determination of Cl - in rare earth fluoride with satisfactory result
0 m mol/ LNa HCO3为流动相 ,以标准曲线法为定量方法 ,测定氟化稀土中的氯离子。
3.
The economical and stable method of determination has been set up by orthogonal design method,and the determination of Cl - in rare earth fluoride have been explored theoretially.
同时探索了氟化稀土中氯根的测
3)  calcium rear earth fluoro-carbonate
钙稀土氟碳酸盐
4)  rare earth fluorides
稀土氟化物
1.
Principles of reactions in the synthesis of rare earth fluorides in RE_2O_3-NH_4HF_2 systems;
RE_2O_3-NH_4HF_2系合成稀土氟化物的反应规律
2.
Rare earth fluorides are very important matrix for luminescence and one of the important studied materials in the solid-electrolyte field as well.
稀土氟化物材料是非常重要的发光基质材料,同时也是固体电解质领域重要的研究对象之一,还作为润滑剂,钢铁和有色金属合金添加剂,在电极材料,化学传感器和生物传感器等方面应用广泛。
5)  rare earth fluoride
稀土氟化物
1.
The results show that the nature of fluoride source plays important roles in controlling the size and morphology of the resulting rare earth fluorides.
研究表明氟源对所得的稀土氟化物的尺寸与形貌有着重要的影响。
2.
This paper designs and homemakes xeransis fluorination furnace,studies the technical processes of preparing rare earth fluoride.
设计自制了干法氟化炉,研究了用静态干法氟化法制备稀土氟化物工艺流程,结果表明:当氟化温度控制在600℃~650℃,氟化氢气体的实际用量为理论计算量的100%,气体流量为3~4kg/h时,氟化率达99。
3.
The orthogonal design method is used for preparation of rare earth fluoride by rare earth oxide(Gd_2O_3) fluorination with NH_4HF_2 in this paper.
采用正交试验法,研究了用氟化氢铵作氟化剂直接与稀土氧化物(Gd2O3)反应,制备稀土氟化物的工艺,确定了氟化的最佳工艺条件,并进行了分析讨论。
6)  rare-earth fluoride
稀土氟化物
1.
Synthesis and application of nanorare-earth fluoride lubricating oil additives;
稀土氟化物纳米润滑油添加剂的合成及应用
补充资料:氟化稀土
分子式:
分子量:
CAS号:

性质:略带红色的白色粉末。熔点1460℃。沸点2300℃。不溶于水、盐酸、硝酸、硫酸、能溶于高氯酸。可用于电影弧光碳棒、探照灯碳棒等的发光材料及钢铁添加剂等。由氢氧化稀土或氯化稀土水溶液与氢氟酸反应而得。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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