首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Electrochemical integration of amorphous NiFe (oxy)hydroxides on surface-activated carbon fibers for high-efficiency oxygen evolution in alkaline anion exchange membrane water electrolysis
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Electrochemical integration of amorphous NiFe (oxy)hydroxides on surface-activated carbon fibers for high-efficiency oxygen evolution in alkaline anion exchange membrane water electrolysis

机译:碱性阴离子交换膜水电解中高效氧化纤维对表面活性炭纤维的无定形NIFE(氧)氢氧化物的电化学整合

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Developing practical water-splitting devices that convert earth-abundant solar energy and water into renewable fuel holds promise for a sustainable energy future; however, its successful commercialization for practical applications is limited by the sluggish kinetics of the oxygen evolution reaction (OER). Herein, we developed a high-efficiency and low-cost three-dimensional (3D) OER electrode via electrochemical integration of amorphous NiFeOOH on surface activated carbon fiber paper (CFP). The as-synthesized 3D-a-NiFeOOH/N-CFP electrode exhibits an ultra-low overpotential eta(O-2) of 170 mV to afford 10 mA cm(-2) current density, together with a Tafel slope of 39 mV per decade, and excellent stability under OER conditions. Apart from the synergistic effect, the excellent OER activity of a-NiFeOOH/N-CFP is attributed to the unique 3D structure with enriched active sites and the improved electrical conductivity that facilitates the fast OER kinetics and mass transport properties. As a result, the catalyst achieves a high turnover frequency (TOF) of 0.99 s(-1) and mass activity (j(m)) of 2527 A g(-1) at eta(O-2) 270 mV, which outperforms so far reported state-of-the-art OER catalysts and commercial IrO2. Besides, an alkaline anion exchange membrane water electrolyzer fabricated with the a-NiFeOOH/N-CFP anode delivers 1 A current at 1.88 V with a long-term durability of 240 h. These findings highlight the design of high-efficiency OER catalysts and significant advancements towards the utilization of NiFeOOH catalysts for commercial applications.
机译:开发实用的水分解装置,将地球上丰富的太阳能和水转化为可再生燃料,为可持续能源的未来带来了希望;然而,由于析氧反应(OER)动力学缓慢,其在实际应用中的成功商业化受到限制。在此,我们通过在表面活性碳纤维纸(CFP)上电化学集成非晶态NiFeOH,开发了一种高效、低成本的三维OER电极。合成的3D-a-NiFeOH/N-CFP电极具有170 mV的超低过电位eta(O-2),可提供10 mA cm(-2)的电流密度,以及每十年39 mV的塔菲尔斜率,并且在OER条件下具有优异的稳定性。除了协同效应外,a-NiFeOH/N-CFP优异的OER活性还归因于具有丰富活性中心的独特3D结构和促进快速OER动力学和质量传输特性的改进的导电性。因此,该催化剂在eta(O-2)270 mV下达到0.99 s(-1)的高转换频率(TOF)和2527 g(-1)的质量活性(j(m)),其性能优于迄今为止报道的最先进OER催化剂和商用IrO2。此外,采用a-NiFeOH/N-CFP阳极制造的碱性阴离子交换膜水电解槽在1.88 V电压下提供1 a电流,长期耐久性为240小时。这些发现突出了高效OER催化剂的设计,以及NiFeOH催化剂商业应用的重大进展。

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