Fu Qianqian, Wang Hui, Nie Kunlun, Wang Xuyun, Ren Jianwei, Wang Rongfang
College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
J Colloid Interface Sci. 2024 Jan;653(Pt A):443-453. doi: 10.1016/j.jcis.2023.09.081. Epub 2023 Sep 12.
In the large-scale implementation of renewable energy devices, the availability of stable and highly catalytic non-precious metal catalysts for the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) is crucial. Meanwhile, integrating bifunctional electrocatalysts simultaneously on both the anode and cathode still faces challenges. To address this, a stepped preparation strategy was adopted on a nickel foam (NF) substrate to synthesize P, S co-doped NiCoPS nanowire array catalysts. The prepared NiCoPS catalysts demonstrated a small Tafel slope of 72.5 mV dec for HER and 72.3 mV dec for OER by requiring only 37 mV (326 mV) overpotential to achieve a current density of 10 mA cm (50 mA cm). Moreover, when assembled into an electrolytic cell in 1 M KOH, the NiCoPS catalysts achieved a low voltage of 1.55 V at 10 mA cm current density and exhibited long-term stability. The outstanding electrocatalytic performance can be attributed to the influence of doped anions on the electronic states and distribution among different atoms, which thereby positively affected the electrocatalytic activity. This research provides an effective method for designing innovative catalysts and paving the way to produce clean energy.
在大规模实施可再生能源装置时,用于析氢反应(HER)和析氧反应(OER)的稳定且高催化活性的非贵金属催化剂的可用性至关重要。同时,在阳极和阴极上同时集成双功能电催化剂仍然面临挑战。为了解决这个问题,在泡沫镍(NF)基底上采用分步制备策略来合成磷、硫共掺杂的NiCoPS纳米线阵列催化剂。所制备的NiCoPS催化剂在析氢反应中表现出72.5 mV dec的小塔菲尔斜率,在析氧反应中为72.3 mV dec,仅需37 mV(326 mV)的过电位即可实现10 mA cm(50 mA cm)的电流密度。此外,当在1 M KOH中组装成电解池时,NiCoPS催化剂在10 mA cm电流密度下实现了1.55 V的低电压,并表现出长期稳定性。优异的电催化性能可归因于掺杂阴离子对不同原子间电子态和分布的影响,从而对电催化活性产生了积极影响。本研究为设计创新催化剂提供了一种有效方法,并为生产清洁能源铺平了道路。