1) silver,oxide
氧化银Ag2O
2) Ag_2O
Ag2O
1.
NiFe_2O_4/Ag composites were prepared by solid-state sintering technology using Fe_2O_3,NiO and Ag_2O as main precipitant.
以Fe2O3、NiO和Ag2O为主要原料,采用固相烧结工艺制备了NiFe2O4/Ag复合材料,用X射线衍射和扫描电子显微镜对材料的组成和微观结构进行了研究,并测量了样品在冰晶石熔盐中的静态热腐蚀速率及其高温电导率。
2.
The Ag_2O is synthesized by solid-phase reaction as electrode material for electrochemical supercapacitor.
用固相合成法制备Ag2O作为超级电容器材料,通过循环伏安与恒流充放电等测试手段对Ag2O电极及与作为负极的活性炭电极组成的电容进行分析。
3) Supported silver oxide catalyst
负载型Ag2O催化剂
4) silver oxide
氧化银
1.
Effect of silver oxide on the molten salt corrosion resistant of inert anode;
氧化银对惰性阳极耐熔盐腐蚀性能的影响
2.
Described a novel method for producing high purity potassium silver cyanide [KAg (CN)2] that uses silver oxide [Ag2O] as an intermediate and crude silver as a silver source (surplus silver from silver nitrate production).
以粗银为原料,通过氧化银作为中间产物合成了氰化银钾。
3.
The silver oxide catalytic oxidation of furfurol in manufacturing furoic acid was improved.
改进了以氧化银为催化剂氧化呋喃甲醛制备呋喃甲酸的方法,产率由原来的44。
5) silver tin oxide
银氧化锡
1.
Hydrothermal preparation and microstructure analysis of silver tin oxide contact materials;
银氧化锡触点材料的水热制备及组织分析
2.
Through electric model tests of silver tin oxide series of contacts under DC lamp load for automobile relays,the electric erosions of the silver tin oxide contacts with different compositions and manufacturing processes were observed.
通过模拟实验机对直流灯负载下汽车继电器用银氧化锡(AgSnO2)系列触头材料进行电性能实验。
3.
The differences of sintered bulk in the microstructure for silver tin oxide(AgSnO2) fabricated in both conentional powder metallurgy and reactive synthesis had been studied in present paper.
研究了粉末冶金法和反应合成法制备的银氧化锡(AgSnO2)复合材料烧结坯在组织上的区别。
6) Silver(Ⅱ) oxide
氧化高银
补充资料:银-氧化锡-氧化钨
分子式:
CAS号:
性质:银基添加氧化锡和氧化钨的电接触材料。氧化钨(或氧化钼)可改善氧化锡的浸润性,减少接点过热。使用寿命大幅度提高。采用烧结挤压法制造。中等负荷电接触材料,用在各种接触器、电机起动器、低功率断路器等电器中。Ag-11.5SNO2-0.5WO3和Ag-11.2SnO2-0.8MoO3可在很多应用领域代替AgCdO。
CAS号:
性质:银基添加氧化锡和氧化钨的电接触材料。氧化钨(或氧化钼)可改善氧化锡的浸润性,减少接点过热。使用寿命大幅度提高。采用烧结挤压法制造。中等负荷电接触材料,用在各种接触器、电机起动器、低功率断路器等电器中。Ag-11.5SNO2-0.5WO3和Ag-11.2SnO2-0.8MoO3可在很多应用领域代替AgCdO。
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