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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Synthesizing amorphous Ni-P micro-/nano-composites with perfect roundness or embryo-like structures
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Synthesizing amorphous Ni-P micro-/nano-composites with perfect roundness or embryo-like structures

机译:用完美的圆度或胚胎结构合成无定形Ni-P微/纳米复合材料

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摘要

The ability to manipulate the morphology and structure of core-shell materials on a micro/nano scale can further control their physical and chemical properties, leading to the wider applications. Herein, the conventional electroless deposition technique for metal alloy films on solid substrates was adapted to synthesize the Ni-P micro/nano-composites in solution under high temperature and high pressure through the hydrothermal method. The obtained amorphous Ni-P composites exhibit perfect roundness with the multilayer structure of concentric circle. By controlling the erosion condition in HNO3, the special embryo-like structure was obtained where a solid microsphere is encircled by a layer of hollow globular ultrathin film with the thickness smaller than 50 nm. A round hole opens on the surface of the embryolike structure. The reaction or formation mechanism was tentatively discussed. The methods can be used to produce the special micro-/nano-structures of metal phosphide. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:操纵微/纳米级核心壳材料形态和结构的能力可以进一步控制其物理和化学性质,导致更广泛的应用。这里,固体基材上的金属合金膜的传统电镀沉积技术适于通过水热法在高温和高压下在溶液中合成溶液中的Ni-P微/纳复合材料。所得无定形Ni-P复合材料具有与同心圆的多层结构的完美圆度。通过控制HNO3中的腐蚀条件,获得特殊的胚状结构,其中固体微球通过一层空心球形超薄膜环绕,厚度小于50nm。圆孔在胚胎结构的表面上打开。暂时讨论了反应或形成机制。该方法可用于生产金属磷化物的特殊微/纳米结构。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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