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A one-dimensional porous carbon-supported Ni/Mo2C dual catalyst for efficient water splitting

机译:高效水分裂的一维多孔碳负载的Ni / MO2C双催化剂

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The development of active, stable and low-cost electrocatalysts towards both the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) for overall water splitting remains a big challenge. Herein, we report a new porous carbon-supported Ni/Mo _(2) C (Ni/Mo _(2) C-PC) composite catalyst derived by thermal treatment of nickel molybdate nanorods coated with polydopamine, which efficiently and robustly catalyses the HER and OER with striking kinetic metrics in alkaline electrolyte. The catalyst affords low onset potentials of ?60 mV for the HER and 270 mV for the OER, as well as small overpotentials of 179 mV for the HER and 368 mV for the OER at a current density of 10 mA cm ~(?2) . These results compare favorably to Mo _(2) C-PC, Ni-PC, and most other documented Ni- and Mo-based catalysts. The high activity of Ni/Mo _(2) C-PC is likely due to electron transfer from Ni to Mo _(2) C, leading to a higher Ni valence and a lower Mo valence in the Ni/Mo _(2) C-PC catalyst, as these are HER and OER active species and thus account for the enhanced activity. Remarkably, our home-made alkaline electrolyser, assembled with Ni/Mo _(2) C-PC as a bifunctional catalyst, can enable a water-splitting current density of 10 mA cm ~(?2) to be achieved at a low cell voltage of 1.66 V.
机译:为整个水分裂的氢进化反应(她)和氧气进化反应(Oer)的活性,稳定和低成本电催化剂的开发仍然是一个大挑战。在此,我们报告了通过涂有多碳胺的镍钼酸镍纳米棒的热处理而衍生的新的多孔碳负载的Ni / Mo _(2)C(Ni / Mo _(2)C-PC)复合催化剂,其有效且强大的催化她和oer呈碱性电解质中引人注目的动力学指标。催化剂为oer和270 mv提供低发病势,oer和270 mv,以及179 mv的小电量,oer为10 ma cm的电流密度为368 mV〜(?2) 。这些结果对Mo _(2)C-PC,Ni-PC和大多数其他记录的Ni和Mo基催化剂进行了比较。 Ni / Mo _(2)C-PC的高活性可能是由于从Ni到Mo _(2)C的电子转移,导致Ni / Mo _(2)中的较高的Ni效价和下部Mo vance C-PC催化剂,因为它们是她和oer Active物种,因此占增强的活动。值得注意的是,我们的本土碱性电解器与Ni / Mo _(2)C-PC组装为双官能催化剂,可以在低电池处实现10mA cm〜(Δ2)的水分解电流密度电压为1.66 V.

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