1)  MoS_2
MoS_2
1.
Synthesis of Megranate-like Nested Polyhedron MoS_2 through Spray-drying Process;
喷雾干燥法制备石榴状嵌套结构MoS_2(英文)
2.
Effect of MoS_2 on the sintering behaviors and mechanical properties of iron-based friction materials;
MoS_2对铁基摩擦材料烧结行为及力学性能的影响
3.
Synthesis of MoS_2/Carbon Composite Nanotubes;
MoS_2/C复合纳米管的合成
2)  MoS_2
二硫化钼
1.
Study of the Tribological Behavior of Kaolinite Based Geopolymer Composites Filled with MoS_2;
二硫化钼填充高岭土基矿物聚合物复合材料的摩擦学性能研究
2.
Study on the Friction and Wear Properties of Polyimide Composites Filled with Polytetrafluoroethylene and MoS_2;
聚四氟乙烯和二硫化钼填充聚酰亚胺复合材料的摩擦磨损性能研究
3.
TRIBOLOGICAL PROPERTIES OF HYBRID CARBON FIBER AND MoS_2 REINFORCED POLYAMIDE 1010 COMPOSITES;
碳纤维和二硫化钼混杂增强尼龙复合材料的摩擦学性能研究
3)  MoS_2
MoS2
1.
MoS_2/WS_2 composite lubricating film was prepared by magnetron co-sputtering method.
采用磁控溅射共溅射法制备MoS2/W S2复合润滑薄膜,利用X射线衍射仪、X射线能谱仪及透射电子显微镜对薄膜的成分和结构进行分析,采用UMT-2MT型微摩擦磨损试验机在大气(相对湿度45%~50%)和室温(20~25℃)环境下评价薄膜的摩擦磨损性能。
2.
Four types of solid lubrication coatings containing MoS_2 were sprayed on the steel substrate by high velocity oxygen fuel(HVOF) spraying.
采用超音速火焰(HVOF)喷涂的方法在45钢表面制备四种含有MoS2的镍基固体润滑涂层,并研究了MoS2含量对涂层组织和性能的影响。
3.
The tribological behavior of the MoS_2 nanoparticles as additive in N46 machine oil was investigated on MM-200 ring-block tribometer.
由硫化钠和钼酸钠水溶液反应生成三硫化钼沉淀,将三硫化钼脱硫,制得了粒径为20~30 nm的纳米MoS2颗粒。
4)  MoS_2
无机富勒烯结构
1.
The advantages and disadvantages of synthesis methods of MoS_2 with fullerene structure in the present were analyzed for its potential application.
本文从无机富勒烯结构二硫化钼(IF-MoS_2)潜在应用的角度出发,分析了国内外富勒烯结构二硫化钼合成方法的优缺点,研究了以单质S和MoO_3为原料,在一定温度下通过气相反应合成无机富勒烯结构MoS_2的新工艺。
5)  nano MoS_2
纳米MoS_2
1.
Ni-P alloy composite coatings with addition of nano MoS_2 were prepared by electroless plating technology.
运用化学复合镀技术制备出添加纳米MoS_2的镍-磷复合镀层。
6)  MoS_2 and graphite
MoS_2与石墨
参考词条
补充资料:MOS试剂
分子式:
分子量:
CAS号:

用途:一类生产金属氧化物半导体电路专用的化学品,是一种高纯试剂。主要用于大规模、超大规模集成电路的研究和生产。
备注:其纯度要求单项金属离子杂质含量均在1E-7%~1E-9%范围内。而更重要的是控制产品内微粒杂质(即尘埃和不溶颗粒)的个数,应当符合美国材料试验学会(ASTM)“0”级标准,即对5-10微米大小的颗粒。每100毫升中最大允许在2700个以下,而对5微米大小的颗粒,要求在304个以下。


说明:补充资料仅用于学习参考,请勿用于其它任何用途。