Ma Kyung Yeol, Kim Hyeongjoon, Hwang Hyuntae, Jeong Da Sol, Lee Hoon Ju, Cho Kyeongseo, Yang Jieun, Jeong Hu Young, Shin Hyeon Suk
Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, Republic of Korea.
Department of Energy Science and Department of Chemistry, Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.
Adv Sci (Weinh). 2024 Sep;11(35):e2403674. doi: 10.1002/advs.202403674. Epub 2024 Jul 12.
Nickel boride catalysts show great potential as low-cost and efficient alternatives to noble-metal catalysts in acidic media; however, synthesizing and isolating a specific phase and composition of nickel boride is nontrivial, and issues persist in their long-term stability as electrocatalysts. Here, a single-crystal nickel boride, NiB, is reported which exhibits high electrocatalytic activity for the hydrogen evolution reaction (HER) in an acidic solution, and that its poor long-term stability can be overcome via encapsulation by single-crystal trilayer hexagonal boron nitride (hBN) film. Interestingly, hBN-covered NiB on a Ni substrate shows an identical overpotential of 52 mV at a current density of 10 mA cm to that of bare NiB. This phenomenon indicates that the single-crystalline hBN layer is catalytically transparent and does not obstruct HER activation. The hBN/NiB/Ni has remarkable long-term stability with negligible changes to its polarization curves for 2000 cycles, whereas the NiB/Ni shows significant degradation after 650 cycles. Furthermore, chronoamperometric measurements indicate that stability is preserved for >20 h. Long-term stability tests also reveal that the surface morphology and chemical structure of the hBN/NiB/Ni electrode remain preserved. This work provides a model for the practical design of robust and durable electrochemical catalysts through the use of hBN encapsulation.
硼化镍催化剂作为酸性介质中贵金属催化剂的低成本高效替代品具有巨大潜力;然而,合成并分离出特定相和组成的硼化镍并非易事,并且其作为电催化剂的长期稳定性问题依然存在。在此,报道了一种单晶硼化镍NiB,它在酸性溶液中对析氢反应(HER)表现出高电催化活性,并且通过单晶三层六方氮化硼(hBN)薄膜封装可以克服其较差的长期稳定性。有趣的是,在镍基底上覆盖hBN的NiB在电流密度为10 mA cm时的过电位与裸NiB相同,均为52 mV。这一现象表明单晶hBN层具有催化透明性,不会阻碍HER活化。hBN/NiB/Ni具有卓越的长期稳定性,其极化曲线在2000次循环中变化可忽略不计,而NiB/Ni在650次循环后则出现明显降解。此外,计时电流法测量表明稳定性可保持超过20小时。长期稳定性测试还表明hBN/NiB/Ni电极的表面形貌和化学结构得以保留。这项工作通过使用hBN封装为实用且耐用的电化学催化剂的实际设计提供了一个模型。