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1)  surface chemical deposition coating
表面化学沉积包覆
1.
The innovative surface chemical deposition coating and chemical film formation on AG treated by mild oxidation were respectively applied to AG surface modification, and the corresponding samples were obtained successfully.
本论文首次将电极生产过程中产生的人造石墨废品及切割碎屑引入到锂离子电池负极活性材料的研究范围,创新性地提出了以表面化学沉积包覆和氧化成膜的方法分别对其进行表面改性修饰并成功地获得了相应的人造石墨改性样品。
2)  chemical deposition coating
化学沉积包覆
1.
Particulate of graphite electrode wastes from an electric-carbon materials factory was formed "core-shell" negative materials by chemical deposition coating with medium pitch.
以大功率石墨电极废品破碎后的微粒为“核”,以中温沥青为包覆原料,经化学沉积包覆形成“核-壳”型锂离子蓄电池负极材料。
3)  surface chemical deposition method
表面化学沉积法
4)  coating [英]['kəʊtɪŋ]  [美]['kotɪŋ]
表面包覆
1.
Through the thermodynamic anal ysis of coating process,it was proved that Al(OH)3 nucleus coating Ti(OH)4 c ompetes with Al(OH)3 film coating Ti(OH)4.
热力学分析表明,在纳米Ti(OH)4表面包覆Al(OH)3的过程中,存在核包覆和膜包覆的竞争;而在其它条件不变的情况下,包覆物的过饱和度对包覆形态起到了决定性的影响。
2.
Through the thermodynamic analysis of coating process, it was proved that Al_2O_3 nucleus coating TiO_2 competes with Al_2O_3 film coating TiO_2.
 热力学分析表明,用化学液相沉积法在纳米TiO2表面包覆氧化铝的过程中,存在核包覆和膜包覆的竞争;而在其它条件不变的情况下,包覆物的过饱和度对包覆形态起到了决定性的影响。
3.
Studies were focused on the effects of different amounts of cobalt coating on structure and electrochemical characteristics of Ni(OH)_2.
通过“管道式合成”工艺制备了球形氢氧化镍,然后以化学沉积法在氢氧化镍表面包覆氢氧化钴,制备了表面覆钴含量不同(0。
5)  surface coating
表面包覆
1.
Research on surface coating of nanoscale titania;
纳米二氧化钛表面包覆的研究
2.
Effect of surface coating by ball milling on cycle stability of Mg-based hydrogen storage electrodes;
球磨表面包覆对镁基贮氢合金电化学性能的影响
6)  Surface modification
表面包覆
1.
Surface modification of CaSiO3∶Pb, Mn phosphors was carried out by coating transparent conductive films of Al-doped zinc oxide which were formed by homogeneous phase co-precipitation and heat treatment process.
以Zn(NO3)·26H2O和AlCl3·6H2O为原料,借助CO(NH2)2的水解反应,采用化学均相共沉淀方法和热处理工艺,在自制CaSiO3∶Pb,Mn红色荧光粉表面包覆ZnO∶Al,形成透明导电层。
2.
In order to overcome these drawbacks, two methods are mainly employed: substitution and surface modification.
为了克服这方面的缺点,目前主要有两种改进手段:体相掺杂和表面包覆。
补充资料:表面化学
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性质:有时又称界面化学。研究非均相体系中异相界面间的物理和化学现象的一门化学。主要研究表面能、表面张力、吸附现象、催化作用和电动现象等。实际应用很多。例如色层分析、萃取、离子交换、接触催化、泡沫浮选等的原理和方法都可用表面化学来阐明。在化学分析、化学工艺、科学研究等方面都有实用价值。

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