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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Facile and controlled synthesis of 3D nanorods-based urchinlike and nonosheets-based flowerlike cobalt basic salt nanostructures
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Facile and controlled synthesis of 3D nanorods-based urchinlike and nonosheets-based flowerlike cobalt basic salt nanostructures

机译:基于3D纳米棒的海胆状和非片状的花状钴碱性盐纳米结构的可控合成

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We report the controlled synthesis of four kinds of cobalt basic salts with different morphologies and colors (pink, blue, green, and lavender) using urea as a hydrolysis agent in the presence of block copolymer P123. Li2SO4 and LiCl were used as salt additives to control the type of cobalt basic, salts. It was found that the amount of urea plays a critical role in the synthesis of cobalt basic salts with different phases. Two of them exhibit interesting three-dimensional urchinlike and flowerlike morphology assembled from nanorods (pink) and nanosheets (blue), respectively. The present work suggests that it is possible to directly grow three-dimensional-ordered assemblies built from one-dimensional or two-dimensional cobalt basic salt narrostructures through a one-step aqueous solution-phase chemical route under controlled conditions.
机译:我们报道了在嵌段共聚物P123存在下使用尿素作为水解剂,对四种形态和颜色(粉红色,蓝色,绿色和淡紫色)不同形状和颜色的钴碱性盐进行了受控合成。 Li2SO4和LiCl用作盐添加剂来控制碱性钴盐的类型。发现尿素的量在合成具有不同相的钴碱性盐中起关键作用。其中两个展示出有趣的三维形状,分别由纳米棒(粉红色)和纳米片(蓝色)组装而成的海胆状和花状形态。目前的工作表明,可以在受控条件下通过一步水溶液相化学路线直接生长由一维或二维钴碱式盐构筑物构建的三维有序组件。

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