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Transition Metal-Based Ternary Catalysts Prepared By Electrodeposition for Hydrogen Evolution Reaction

机译:通过电沉积氢进化反应制备的过渡金属基三元催化剂

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To solve the global warming problem caused by indiscriminate use of fossil fuel, hydrogen production technology via water electrolysis is drawing attention. It is known that the Pt catalyst has been reported to be excellent for hydrogen evolution reaction (HER), which inhibits commercialization of water electrolysis due to its high price. For this reason, non-noble metal-based catalysts have been investigated to achieve cost-effectiveness with acceptable catalytic performance. It has recently been studied focusing on transition metals (Ni, Co, Mo, etc.) combined with non-metals (B, N, O, S, P, etc.) and reported indicating improved HER performance of transition metal borides and transition metal phosphides. In this study, nickel based complex containing phosphides and borides catalysts (Ni-P-B) were prepared on the carbon paper substrate using electrodeposition method. Phosphorous is reported to act as an active site due to its abundance of electrons and high electronegativity, and thus the catalytic performance of transition metal phosphides to HER increased with an increase in P ratio. On the other hand, boron has a different aspect. In transition metal borides, boron was expected to act as an active site due to its abundance and high electronegativity, but in practice the boron's electrons increase catalyst activity by donating electrons to the empty d-orbital. Nickel-based compounds containing phosphorus and boron (Ni-P-B) may be catalysts for HER, given the advantages of nickel phosphides and borides, but little research has been done on this. An experiment was conducted to increase the performance of the transition metal by adjusting the ratio of P and B in combination with the different properties of the transition metal phosphides and borides. Deposition parameters such as deposition potential/time and bath configuration were changed to control their morphology and composition. Their catalytic activity for HER was tested in half-cell measurement with the acidic electrolyte. Then the activity orders based on geometric current, specific activity, and mass activity were connected with the results from analysis on material properties. Furthermore, employing the optimized catalyst in cathode, the performance of proton exchange membrane water electrolyzer was tested.
机译:为了解决难以消化的化石燃料造成的全球变暖问题,通过水电解的氢气生产技术引起了注意力。已知Pt催化剂据报道,对于氢进化反应(她)优异,这抑制了由于其高价格导致水电解的商业化。因此,已经研究了非贵金属基催化剂以实现具有可接受的催化性能的成本效益。最近已经专注于过渡金属(Ni,Co,Mo等)与非金属(B,N,O,S,P等)的过渡金属(Ni,Co,Mo等)的研究,并报告了改善了过渡金属硼化物和过渡的性能。金属磷化物。在该研究中,使用电沉积法在碳纸基材上制备含镍的含磷酸和硼化物催化剂(Ni-P-B)。据报道,由于其丰富的电子和高电负性,因此磷作为活性位点,因此随着P比率的增加,过渡金属磷化磷酸的催化性能增加。另一方面,硼有一个不同的方面。在过渡金属硼化硼中,预期硼由于其丰度和高电负性而作为活性位点,但在实践中,通过将电子向空D-orbital捐赠硼的电子来增加催化剂活性。鉴于磷化镍和硼化物的优点,鉴于磷化镍和硼化物的优点,鉴于磷化镍和硼化物的优点,含有磷和硼(Ni-P-B)的含镍化合物可以是催化剂。进行实验以通过调节P和B的比例与过渡金属磷酸和硼化物的不同性质调节P和B的比例来提高过渡金属的性能。改变沉积参数,例如沉积电位/时间和浴缸配置以控制它们的形态和组成。它们的催化活性在酸性电解质中以半电池测量测试。然后基于几何电流,特定活动和质量活动的活动订单与来自材料特性分析的结果连接。此外,在阴极中使用优化的催化剂,测试了质子交换膜水电解槽的性能。

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