The invention discloses an improved synthesis method of nano alpha Ni (OH) 2. Firstly, NiCl2.6H2O and PPV were selected, distilled water was added, and the solution was dissolved by ultrasonic wave for one minute to form a light green clarified solution. Then, the clarified solution was transferred to a three-necked flask and stirred. Next, the newly configured NaBH4 solution was dripped into the solution with an injection pump within 15 minutes. With the addition of NaBH4, the solution was added from the three-necked flask. The clarified pale green gradually turns gray, and finally becomes black opaque solution, and a large number of bubbles emerge. After the reagent is added, the stirring reaction is continued. After the reaction is finished, a black turbid solution is obtained. The solution is centrifuged, washed with water and alcohol three times, and then dried in oven. Finally, the black powder product is obtained.
【技术实现步骤摘要】
一种纳米α-Ni(OH)2的改良合成方法
本专利技术涉及一种纳米α-Ni(OH)2的改良合成方法。
技术介绍
氢氧化镍是一种绿色的粉末,为六方晶系,一般有α-Ni(OH)2、β-Ni(OH)2两种晶型,它们的不同在于层间距和层间粒子存在差异。β-Ni(OH)2的层间距约为0.46~0.48nm,层间无H2O和其它离子插入,而α-Ni(OH)2层间距可达0.7~0.8nm,层间存在H2O和插层阴离子,α-Ni(OH)2的理论比容量约是β-Ni(OH)2的1.5倍。镍基纳米材料具有较高的比表面和化学活性,同时具有特殊的磁学、光学、电学、催化学等性能,已成为国内外新颖功能材料开发的热点之一。α-Ni(OH)2常用的合成方法是采用NiCl2与NaOH发生复分解反应,反应并不充分且反应时间更长。
技术实现思路
本专利技术的目的针对现有技术中的缺陷,为此提供一种纳米α-Ni(OH)2的改良合成方法,该方法是针对α-Ni(OH)2合成过程反应不充分的不足,采用将常用的苛性碱替换为NaBH4。为实现上述目的,本专利技术采用的技术方案是:一种纳米α-Ni(OH)2的改良合成方法,其制备 ...
【技术保护点】
1.一种纳米α‑Ni(OH)2的改良合成方法,其制备步骤如下:1)用天平称取0.238‑0.258质量份的NiCl2﹒6H2O和0.200‑0.220质量份的PVP,加入约40mL蒸馏水,在超声波的条件使其溶解形成浅绿色的澄清溶液,超声波使用时间为1‑1.5min;2)将该澄清溶液转移至三颈烧瓶中,设置液晶数字搅拌器的转速为800‑1000r/min,搅拌溶液45‑60min,然后静置待用;3)取40mL配置的NaBH4溶液用注射泵在15min内滴加至步骤2)中的溶液中;4)随着NaBH4的加入,溶液由澄清的浅绿色逐渐变灰,最后变为黑色不透明溶液,并有大量气泡产生,待NaB ...
【技术特征摘要】
1.一种纳米α-Ni(OH)2的改良合成方法,其制备步骤如下:1)用天平称取0.238-0.258质量份的NiCl2﹒6H2O和0.200-0.220质量份的PVP,加入约40mL蒸馏水,在超声波的条件使其溶解形成浅绿色的澄清溶液,超声波使用时间为1-1.5min;2)将该澄清溶液转移至三颈烧瓶中,设置液晶数字搅拌器的转速为800-1000r/min,搅拌溶液45-60min,然后静置待用;3)取40mL配置的NaBH4溶液用注射泵在15min内滴加至步骤2)中的溶液中;4)随着NaBH4的加入,溶液由澄清的浅绿色...
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