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首页> 外文期刊>ACS applied materials & interfaces >Ultrathin Graphdiyne-Wrapped Iron Carbonate Hydroxide Nanosheets toward Efficient Water Splitting
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Ultrathin Graphdiyne-Wrapped Iron Carbonate Hydroxide Nanosheets toward Efficient Water Splitting

机译:超薄甲碳酸铁碳酸铁纳米型朝向有效的水分裂

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We employed a two-step strategy for preparing ultrathin graphdiyne-wrapped iron carbonate hydroxide nanosheets on nickel foam (FeCH@GDY/NF) as the efficient catalysts toward the electrical splitting water. The introduction of naturally porous GDY nanolayers on FeCH surface endows the pristine catalyst with structural advantages for boosting catalytic performances. Benefited from the protection of robust GDY nanolayers with intimate contact between GDY and FeCH, the combined material exhibits high long-term durability of 10 000 cycles for oxygen-evolution reaction (OER) and 9000 cycles for hydrogen evolution reaction (HER) in 1.0 M KOH. Such excellent bifunctional OER/HER performance makes FeCH@GDY/NF quite qualified for alkaline two-electrode electrolyzer. Remarkably, such electrocatalyst can drive 10 and 100 mA cm(-2) at 1.49 and 1.53 V, respectively. These results demonstrate the decisive role of GDY in the improvement of electrocatalytic performances, and open up new opportunities for designing cost-effective, efficient, and stable electrocatalysts for sustainable oxygen/hydrogen generation.
机译:我们采用了两步策略,用于在镍泡沫(Fech @ GDy / NF)上以镍泡沫(Fech @ GDy / NF)的碳酸铁碳酸铁碳酸盐纳米片作为朝向电气分裂水的有效催化剂。在灌输表面上引入天然多孔的​​GDY纳米纳米,赋予原始催化剂具有促进催化性能的结构优点。受益于保护强大的GDY纳米组,在GDY和毛皮之间具有紧密接触的紧密接触,组合材料具有高度长期耐久性为10 000个循环的氧化反应(OER)和9000次循环,用于氢进化反应(她)在1.0米处KOH。这种出色的双功能OER /她的性能使FECH @ GDY / NF适用于碱性双电极电解槽。值得注意的是,这种电催化剂可以分别在1.49和1.53V下驱动10和100mA cm(-2)。这些结果表明了GDY在改善电催化性能方面的决定性,并开辟了为可持续氧气/氢气产生的成本效益,高效和稳定的电催化剂设计的新机会。

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