Tran Ngoc Quang, Le Bao Thu Nguyen, Le Thong Nguyen-Minh, Duy Le Thai, Phan Thang Bach, Hong Yeseul, Truong Thuy-Kieu, Doan Tan Le Hoang, Yu Jianmin, Lee Hyoyoung
Center for Innovative Materials and Architectures, Ho Chi Minh City 700000, Viet Nam.
Vietnam National University, Ho Chi Minh City 700000, Viet Nam.
J Phys Chem Lett. 2022 Sep 1;13(34):8192-8199. doi: 10.1021/acs.jpclett.2c02132. Epub 2022 Aug 25.
Exploring efficient catalysts for alkaline seawater electrolysis is highly desired yet challenging. Herein, coupling single-atom rhodium with amorphous nickel hydroxide nanoparticles on copper nanowire arrays is designed as a new active catalyst for the highly efficient alkaline seawater electrolysis. We found that an amorphous Ni(OH) nanoparticle is an effective catalyst to accelerate the water dissociation step. In contrast, the single-atom rhodium is an active site for adsorbed hydrogen recombination to generate H. The NiRh-Cu NA/CF catalyst shows superior electrocatalytic activity toward HER, surpassing a benchmark Pt@C. In detail, the NiRh-Cu NA/CF catalyst exhibits HER overpotentials as low as 12 and 21 mV with a current density of 10 mA cm in fresh water and seawater, respectively. At high current density, the NiRh-Cu NA/CF catalyst also exhibits an outstanding performance, where 300 mA cm can be obtained at an overpotential of 155 mV and shows a slight fluctuation in the current density over 30 h.
探索用于碱性海水电解的高效催化剂极具吸引力,但也颇具挑战。在此,将单原子铑与铜纳米线阵列上的非晶态氢氧化镍纳米颗粒耦合,设计出一种用于高效碱性海水电解的新型活性催化剂。我们发现非晶态Ni(OH)纳米颗粒是加速水离解步骤的有效催化剂。相比之下,单原子铑是吸附氢重组生成H的活性位点。NiRh-Cu NA/CF催化剂对析氢反应表现出优异的电催化活性,超过了基准Pt@C。具体而言,NiRh-Cu NA/CF催化剂在淡水和海水中,电流密度为10 mA cm时,析氢过电位分别低至12 mV和21 mV。在高电流密度下,NiRh-Cu NA/CF催化剂也表现出出色的性能,在155 mV的过电位下可获得300 mA cm,并且在30小时内电流密度略有波动。