1)  carbon-coating
碳包敷
1.
The carbon-coating technology of metallic nanoparticles at home and abroad was reviewed in this paper, it indicated that three problems in this field are facing huge challenges: backward technology of preparation, lack theoretical and applied researches.
全面介绍了国内外碳包敷金属纳米粒子技术的研究现状,指出了目前该技术存在的3个关键问题:制备技术落后;理论研究及功能应用研究缺乏。
2)  carbon complexity
碳包
3)  carbon-coated
碳包覆
1.
Study on preparation and property of carbon-coated silicon/carbon composite;
碳包覆硅/碳复合材料的制备与性能研究
2.
The mechanism of formation of carbon-coated Aluminum nan.
在甲烷气氛中采用激光-感应复合加热法制备了碳包覆纳米铝粉。
4)  carbon coating
碳包覆
1.
The carbonation of various carbon sources in carbon coating process of LiFePO4 is investigated by using simultaneous thermogravimetric-differential thermal analysis(TG-DTA) and scanning electron microscopy(SEM) methods.
采用热重分析(TG-DTA)和扫描电子显微镜(SEM)研究了磷酸铁锂碳包覆工艺中不同碳源的碳化过程以及碳化产物的形貌特征。
2.
In this work,the chemical vapor deposition(CVD)method was applied to form carbon coating on the surface of LiFePO4 during the solid-state reaction process using benzene as carbon source.
实验中以苯为碳源,采用化学气相沉积方法在固相反应法制备LiFePO4材料的过程中对材料表面进行碳包覆。
3.
The structure,morphology and electrochemical properties of LiFePO4/C were analyzed by XRD,SEM and galvano static charge-discharge method,state of carbon coating was studied by Raman spectra and TEM.
LiFePO4/C样品的表面包覆层均为非晶碳,以柠檬酸为碳源合成的LiFePO4/C材料,具有较小的颗粒尺寸,均匀多孔的表面碳包覆层和最佳的电化学性能。
5)  carbon-coated iron
碳包覆铁
6)  carbon-coated iron
碳包铁
1.
In this experiment carbon-coated iron was used to absorb mitomycin C in the solution,the adsorption dynamic was investigated,and sustained release of the microparticles were studied at varied temperature.
纳米碳包铁粒子是在金属外面包了一层碳的粒子,可直接用于药物包埋。
2.
The melt point of the carbon-coated iron nano.
采用氢电弧等离子体法制备了碳包铁纳米粒子 ,通过X射线衍射仪 (XRD)、透射电镜 (TEM)、扫描电镜(SEM)、X射线能谱仪 (EDS)、热重 差热分析仪 (TG DSC)等分析手段对粒子的成分、形貌 ,相结构 ,热性能等进行了表征。
参考词条
补充资料:微胶囊包敷
分子式:
CAS号:

性质:是将某些有机高分子物质,通过一定的方法,将药物、化妆品活性成分等包敷起来,形成小球,即微胶囊。可用的有机高分子物有明胶、甲基纤维素、聚乙烯、聚甲基丙烯酸甲酯、尼龙12等。微胶囊的粒径一般在1~5000μm之间。化妆品中常用的微胶囊粒径在1~100μm之间。新发展起来的微微胶囊(nano particles)其粒径更小,一般在0.01~1nm之间。

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