首页> 外国专利> METHOD FOR MANUFACTURING BASE POWDER HAVING CARBON NANO-COATING LAYER, MgB2 SUPERCONDUCTOR AND METHOD FOR MANUFACTURING MgB2 SUPERCONDUCTOR IN WHICH SAID METHOD FOR MANUFACTURING BASE POWDER IS USED, LITHIUM ION BATTERY AND METHOD FOR MANUFACTURING LITHIUM ION BATTERY POSITIVE ELECTRODE MATERIAL, AND METHOD FOR MANUFACTURING PHOTOCATALYST

METHOD FOR MANUFACTURING BASE POWDER HAVING CARBON NANO-COATING LAYER, MgB2 SUPERCONDUCTOR AND METHOD FOR MANUFACTURING MgB2 SUPERCONDUCTOR IN WHICH SAID METHOD FOR MANUFACTURING BASE POWDER IS USED, LITHIUM ION BATTERY AND METHOD FOR MANUFACTURING LITHIUM ION BATTERY POSITIVE ELECTRODE MATERIAL, AND METHOD FOR MANUFACTURING PHOTOCATALYST

机译:具有碳纳米涂层的基粉的制造方法,MgB2超导体和制造MgB2超导体的方法,其中使用的是制造基粉的方法,锂离子电池,制造电解法和制造电解池的方法

摘要

Provided is a method for manufacturing a base material powder having a carbon nanocoating layer, the method including adding a polycyclic aromatic hydrocarbon to a base material powder, heating the mixture to a temperature that is higher than or equal to the boiling point of the polycyclic aromatic hydrocarbon and is lower than or equal to the relevant boiling point temperature + 300°C, and that is higher than or equal to the thermal decomposition temperature of the polycyclic aromatic hydrocarbon, and thereby coating the surface of the base material powder with a layer of carbon having a thickness of 0.1 nm to 10 nm. According to the method, when a source of carbon that covers a base material powder is appropriately selected, the base material powder having the carbon nanocoating layer can be provided, which does not have a possibility of causing inconveniences in the applications of a final manufactured product of the base material powder and exhibits satisfactory productivity of the base material powder, and from which a modified final manufactured product is obtained.
机译:提供一种用于制造具有碳纳米涂层的基础材料粉末的方法,该方法包括将多环芳族烃添加到基础材料粉末中,将该混合物加热至高于或等于多环芳族化合物的沸点的温度。烃的沸点低于或等于相关沸点温度+ 300°C,并且高于或等于多环芳烃的热分解温度,从而在基材粉末的表面覆盖一层厚度为0.1nm至10nm的碳。根据该方法,当适当地选择覆盖基材粉末的碳源时,可以提供具有碳纳米涂层的基材粉末,不会在最终产品的应用中带来不便。基材粉末具有良好的生产率,并具有令人满意的基材粉末生产率,并由此获得改性的最终产品。

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