首页> 外国专利> TITANIUM OXIDE NANOTUBE MANUFACTURING METHOD USING ANODIZATION WITHIN AN AQUEOUS ELECTROLYTE SOLUTION CAPABLE OF OBTAINING TITANIUM OXIDE WITH A CRYSTAL STRUCTURE

TITANIUM OXIDE NANOTUBE MANUFACTURING METHOD USING ANODIZATION WITHIN AN AQUEOUS ELECTROLYTE SOLUTION CAPABLE OF OBTAINING TITANIUM OXIDE WITH A CRYSTAL STRUCTURE

机译:在具有晶体结构的氧化钛水溶液中电解阳极氧化制备氧化钛纳米管的方法

摘要

PURPOSE: A titanium oxide nanotube manufacturing method using anodization within an aqueous electrolyte solution is provided to enhance bonding strength and length of the nanotubes.;CONSTITUTION: A titanium oxide nanotube manufacturing method comprises the following steps: pre-processing an anode substrate through a chemical mechanical process, a degreasing process, and an etching process(s100); preparing a cell including an anode substrate, a cathode substrate, a reaction bath made of a plastic material, and an aqueous electrolyte solution(s200); and anodizing by applying voltage to the cell(s300). The water-soluble electrolyte includes water, hydrogen fluoride, and phosphoric acid. The concentration of the hydrogen fluoride is 0.1-0.5 molarity, and the concentration of the phosphoric acid is 0.1-10 molarity. The temperature of the water-soluble electrolyte is 0-25 deg. Celsius.;COPYRIGHT KIPO 2013;[Reference numerals] (S100) Pre-processing step; (S200) Cell preparing step; (S300) Anodizing step
机译:目的:提供一种在电解质水溶液中使用阳极氧化的二氧化钛纳米管制造方法,以增强纳米管的结合强度和长度。组成:二氧化钛纳米管制造方法包括以下步骤:通过化学方法对阳极基板进行预处理机械处理,脱脂处理和蚀刻处理(S100);制备包括阳极基板,阴极基板,由塑料制成的反应浴和电解质水溶液的电池(S200);然后通过向电池施加电压来进行阳极氧化(S300)。水溶性电解质包括水,氟化氢和磷酸。氟化氢的浓度为0.1-0.5摩尔浓度,磷酸的浓度为0.1-10摩尔浓度。水溶性电解质的温度为0-25度。摄氏;; COPYRIGHT KIPO 2013; [参考数字](S100)预处理步骤; (S200)细胞制备步骤; (S300)阳极氧化步骤

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