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1)  compound layer
化合物层
1.
The influence of plasma nitriding temperature on compound layer of passage plank;
离子氮化温度对通道板表面化合物层的影响
2.
The results show that the compound layer (white layer) will reduce with the extension of the pressure-holding time until it disappears.
结果表明,在共渗温度时间一定的情况下,随着保压时间的延长,化合物层(白亮层)逐渐减少,直至消失,有效控制化合物层的厚度,满足材料的使用要求。
3.
The influence of methane on the thickness of compound layer in plasma nitrocarburizing process was investigated.
研究了如何在离子氮碳共渗过程中提高化合物层的厚度 ,同时对化合物层的微观组织结构和显微硬度进行了分析。
2)  layered compound
层状化合物
1.
Review on inorganic layered compound inorganic layered compound and its application;
无机层状化合物及其应用述评
2.
The titanoniobates have been rewarded much attention, which are a type of layered compounds.
由于层状化合物具有的典型层板状结构和层间离子可交换性,使得其应用引起广泛关注。
3)  layered compounds
层状化合物
1.
Preparation and application of layered compounds;
离子型层状化合物制备及应用研究
2.
The studies on the misfit layered compounds are reviewed.
双晶格不匹配层状化合物是一类具有两套次级晶格(两组晶胞常数)的复杂层状化合物,可分为氧化物和非氧化物两大类。
3.
Research progress of inorganic layered compounds photocatalysts for photocatalytic decomposition of water into hydrogen and oxygen was described in this paper.
论述了无机层状化合物光催化剂光解水制氢研究进展;介绍了层状化合物光催化剂光解水的机理;概述了层状化合物光催化剂光解水的特性和提高其光催化活性的途径;并对未来的研究前景进行了展望。
4)  Intercalation Compounds
插层化合物
1.
The formation process of the FeCl_3-graphite intercalation compounds (GICs) was studied by using vacuum heat-treatment.
以氯化铁(FeCl_3)与石墨为原料,利用真空热处理方法制备了氯化铁(FeCl_3)-石墨的插层化合物(GICs)。
5)  intercalation compound
插层化合物
1.
Study of structural model of C_X~+.HSO_4~- intercalation compound;
C_X~+.HSO_4~-插层化合物结构模型的研究
2.
Several intercalation compounds of molybdenum disulfide containing various guest substances with photic, electrical, magnetic, thermal or catalytical properties were prepared in order to get novel desired functions.
MoS_2为无机功能材料,具有层状结构,人们制备出了一系列含不同客体物质的MoS_2插层化合物,以期制备出满足不同要求的含MoS_2的新型功能材料,如光、电、磁、热、催化等复合材料。
3.
In this thesis the study is aimed at the research on the structural stability and other problems of intercalation compound caused by the fact of the order-disorder phase transition of intercalation compounds and decisive effect on material property by the ordered structures of intercalated ions.
本论文依据插层化合物中插层离子有序—无序相变的事实和插层离子的有序结构对材料性能的决定作用,选定插层离子的有序结构稳定性等问题为研究对象。
6)  intercalation compounds
层间化合物
1.
Synthesis and electrical conductivity of FeCl_3 exfoliated graphite intercalation compounds;
FeCl_3膨胀石墨层间化合物制备及电导性能研究
2.
As a kind of new materials, graphite intercalation compounds have wide applications.
石墨层间化合物属于21世纪的新材料——纳米材料,具有广阔的应用前景。
补充资料:层间化合物
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性质:许多无机物具有层状的晶体结构,如石墨、二硫化钼、二硫化钛、三氯化铝、碘化镉、三氧化钼、天然蒙脱石等。层内原子间的结合力较强,层间则较弱。因此,其他的原子、分子或离子可插入层间,形成层间化合物或称嵌入化合物。重要的有石墨、过渡金属二硫化物、铝硅酸盐粘土矿物等的层间化合物。它们之中有些是特殊的功能材料,受到重视。

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