College of Petrochemical Technology, Lanzhou University of Technology, Lanzhou, 730050, China.
Dalton Trans. 2023 Jul 4;52(26):9077-9083. doi: 10.1039/d3dt00845b.
Transition metal borides are seen as potential candidates for oxygen evolution reaction (OER) electrocatalysts due to their superconductivity and rich surface-active sites, but monometallic borides only display generic OER catalytic performance. Hence, iron-doped bimetallic boride nanoparticles (Fe-NiB/NF-) on Ni foam are reported and applied as superior OER electrocatalysts with high catalytic activities. Such bimetallic boride electrocatalysts require overpotentials of only 194 and 336 mV to afford current densities of 10 and 500 mA cm toward the OER in 1 M KOH electrolyte, and Fe-NiB/NF-3 can retain this catalytic stability for at least 100 h at 1.456 V. The performance of the improved catalyst Fe-NiB/NF-3 matches the best nickel-based OER electrocatalysts reported so far. Analysis of X-ray photoelectron spectroscopy (XPS) and Gibbs free energy calculations show that Fe-doping essentially acts to modulate the electronic density of NiB and lower the free energy of O adsorption in the OER. The charge density differences and d-band theory proved that Fe sites have a high charge state and can be taken as catalytic sites for the OER. This proposed synthesis strategy provides a different view for preparing efficient bimetallic boride electrocatalysts.
过渡金属硼化物因其超导性和丰富的表面活性位点而被视为氧析出反应(OER)电催化剂的潜在候选物,但单金属硼化物仅显示出通用的 OER 催化性能。因此,在泡沫镍上报告并应用了铁掺杂的双金属硼化物纳米粒子(Fe-NiB/NF-)作为具有高催化活性的优异 OER 电催化剂。在 1 M KOH 电解质中,这种双金属硼化物电催化剂仅需 194 和 336 mV 的过电势即可提供 10 和 500 mA cm 的电流密度,并且 Fe-NiB/NF-3 可以在 1.456 V 下至少保持 100 h 的这种催化稳定性。改进后的催化剂 Fe-NiB/NF-3 的性能与迄今为止报道的最佳镍基 OER 电催化剂相匹配。X 射线光电子能谱(XPS)和吉布斯自由能计算分析表明,Fe 掺杂实质上可以调节 NiB 的电子密度并降低 OER 中 O 吸附的自由能。电荷密度差和 d 带理论证明了 Fe 位具有高电荷态,可以作为 OER 的催化位点。该合成策略为制备高效双金属硼化物电催化剂提供了不同的视角。