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Synthesis and Composition Study of Electrochemically Deposited Ni-P Coating with Increased Surface Area

机译:电化学沉积镍锌涂层与表面积增加的合成与组合研究

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Nickel phosphides NixPy are a promising family of binary compounds that have shown much promise in various fields of technology, including energy storage, light absorption and heterogeneous catalysis in the reactions of biomass hydrogenation. The performance of NixPy-containing materials depends greatly on their morphology and phase composition and, in turn, on the synthesis technique. In this work, we have employed the electroplating approach to synthesize a Ni-P coating, which was treated with nitric acid in order to develop its surface area and enrich it with phosphorus. We have employed scanning electron microscopy, X-ray diffraction and 31P nuclear magnetic resonance techniques to characterize the particles separated from the coating with ultrasound for the convenience of the study. According to experimental data, the obtained powder contained a mixture of Ni3P and phosphorus oxides, which transformed into nickel phosphide phases richer with phosphorus, such as Ni5P2 and Ni12P5, after treatment at elevated temperatures. Thus, we have demonstrated that electroplating followed by acid treatment is a feasible approach for the synthesis of Ni-P coatings with increased surface area and variable phase composition.
机译:磷化镍Nixpy是一家有前途的二元化合物家族,在各种技术领域都有很大的承诺,包括生物质氢化反应中的能量储存,光吸收和异质催化。含Nixpy的材料的性能大大取决于它们的形态和相位成分,而且反过来,在合成技术上。在这项工作中,我们采用了电镀方法来合成Ni-P涂层,其用硝酸处理,以便发展其表面积并用磷来富含磷。我们采用扫描电子显微镜,X射线衍射和31P核磁共振技术,以表征与超声波分离的颗粒以方便研究。根据实验数据,所得粉末含有Ni3P和磷氧化物的混合物,其在升高温度下处理后,用磷,例如Ni5P2和Ni12P5转化为磷化镍相浓郁。因此,我们已经证明电镀之后是酸处理是合成具有增加的表面积和可变相组合物的Ni-P涂层的可行方法。

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