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作 者:李群艳[1] 娄载亮[1] 王汝娜[1] 王志宏[1] 韦奇[1]
机构地区:[1]北京工业大学,北京100124
出 处:《稀有金属材料与工程》2009年第A01期316-320,共5页Rare Metal Materials and Engineering
基 金:北京工业大学博士启动基金(00200);北京工业大学青年科学基金(00295)
摘 要:以氢氟酸为溶液中镍离子配位剂,然后加入氨水,调节溶液pH值的同时,作为镍离子补充配位剂,制备了由纳米片花瓣组成的Ni(OH)2花状微球。Ni(OH)2花状微球的晶型和微观结构的调控可以简单通过改变溶液pH值来实现。当溶液在7.5≤pH≤8.8范围时,能够得到大量、均匀的Ni(OH)2花状微球。当溶液在7.5≤pH≤8.0范围时,Ni(OH)2微球为α-Ni(OH)2晶型;当溶液在8.0<pH≤8.8范围时,Ni(OH)2微球为α-Ni(OH)2和β-Ni(OH)2的混合晶型。Ni(OH)2花状微球直径在0.6~1.3μm范围内随溶液pH值的变化而变化。Ni(OH)2花状微球由几十个相互连接的纳米片状花瓣组成,纳米片花瓣厚度约60nm,长度在80~230nm之间随溶液pH值的变化而显著变化。Flower-like Ni(OH)2 microspheres were successfully synthesized by a solution growth process with F and NH3 aqueous solutions as Ni^2+ coordination agents, and NH3 aqueous solution as OH supplier to accelerate the hydrolyzation of nickel complex species. The microstrueture and crystallinity of flower-like Ni(OH)2 microspheres can be controlled through changing simply solution pH. Uniform flower-like Ni(OH)2 microspheres made of nanoflakes could be got within 7.5 ≤pH≤ 8.8. a-Ni(OH)2 was prepared within 7.5 ≤pH≤ 8.0, and α- and β-Ni(OH)2 were prepared within 8.0〈pH≤〈 8.8. The diameters of flower-like Ni(OH)2 microspheres changed from 0.6-1.3 μm with solution pH. Flower-like Ni(OH)2 microspheres were composed of nanoflakes with thickness of about 60 nm and length changing a lot from 80 to 230 nm with solution pH.
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