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Synthesis of Co/Ni - Hydroxyapatite by Electrochemical Method

机译:电化学方法合成CO / Ni - 羟基磷灰石

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Electrochemical synthesis has been used for in-situ metal-hydroxyapatite production effectively because of the ease of controlling good metal synthesis and dispersion. This condition is very interesting to produce a catalyst in the form of a Co/Ni-hydroxyapatite composite used for hydrogen production from storage as a hydride chemical. The novelty of this research is the electrochemical synthesis of in situ metal-hydroxyapatite catalysts (together with electrochemistry of hydroxyapatite formation and Co/Ni impregnation). The advantages of hydroxyapatite as a catalyst support and electrochemical method in situ were combined in this study. The set of the experimental equppment consist of an electrochemical cell and a DC power supply. The electrochemical cells consist of a 250 ml volume acrylic container containing an electrolyte solution containing NiCl_2 and CoCl_2. This solution is made by dissolving Na2H2EDTA.2H20 pro analyzer. Anode and cathode electrodes in the form of a rectangular carbon rod measuring 5.2 cm x 2 cm. The electrochemical cells are connected to a DC power supply which functions to give a potential difference between the two electrodes where the current density can be varied according to the specified variable. The Cobalt/ Nickel bi-catalyst with hydroxyapatite was successfully synthesized at 80 mA/cm~2 current density and 1 hour time electrolysis at room temperature.
机译:由于易于控制良好的金属合成和分散性,电化学合成已被有效地用于原位金属 - 羟基磷灰石生产。该条件非常有趣,以生产用于从储存的CO / Ni-羟基磷灰石复合物的形式生产催化剂作为氢化物化学品。该研究的新颖性是原位金属 - 羟基磷灰石催化剂的电化学合成(以及羟基磷灰石形成和CO / Ni浸渍的电化学)。羟基磷灰石作为催化剂载体的优点和原位的电化学方法在本研究中结合。该组实验均方面包括电化学电池和直流电源。电化学电池由250mL体积丙烯酸容器组成,含有含有NiCl_2和CoCl_2的电解质溶液。该解决方案是通过溶解Na2H2EDTA.2H20 Pro分析仪制备的。阳极和阴极电极以矩形碳棒的形式测量5.2cm×2cm。电化学电池连接到DC电源,该直流电源,其用于给出电极之间的两个电极之间的电位差,其中电流密度可以根据指定变量变化。用羟基磷灰石的钴/镍Bi催化剂在室温下成功地合成80mA / cm〜2电流密度和1小时的时间电解。

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