Zhang Jingyan, Bai Xiaowan, Wang Tongtong, Xiao Wen, Xi Pinxian, Wang Jinlan, Gao Daqiang, Wang John
1Key Laboratory for Magnetism and Magnetic Materials of MOE, Key Laboratory of Special Function Materials and Structure Design of MOE, Lanzhou University, Lanzhou, 730000 People's Republic of China.
2School of Physics, Southeast University, Nanjing, 211189 People's Republic of China.
Nanomicro Lett. 2019;11(1):2. doi: 10.1007/s40820-018-0232-2. Epub 2019 Jan 9.
The development of efficient earth-abundant electrocatalysts for oxygen reduction, oxygen evolution, and hydrogen evolution reactions (ORR, OER, and HER) is important for future energy conversion and energy storage devices, for which both rechargeable Zn-air batteries and water splitting have raised great expectations. Herein, we report a single-phase bimetallic nickel cobalt sulfide ((Ni,Co)S) as an efficient electrocatalyst for both OER and ORR. Owing to the synergistic combination of Ni and Co, the (Ni,Co)S exhibits superior electrocatalytic performance for ORR, OER, and HER in an alkaline electrolyte, and the first principle calculation results indicate that the reaction of an adsorbed O atom with a HO molecule to form a *OOH is the potential limiting step in the OER. Importantly, it could be utilized as an advanced air electrode material in Zn-air batteries, which shows an enhanced charge-discharge performance (charging voltage of 1.71 V and discharge voltage of 1.26 V at 2 mA cm), large specific capacity (842 mAh g at 5 mA cm), and excellent cycling stability (480 h). Interestingly, the (Ni,Co)S-based Zn-air battery can efficiently power an electrochemical water-splitting unit with (Ni,Co)S serving as both the electrodes. This reveals that the prepared (Ni,Co)S has promising applications in future energy conversion and energy storage devices.
开发用于氧还原、析氧和析氢反应(ORR、OER和HER)的高效且储量丰富的地球电催化剂对于未来的能量转换和能量存储设备至关重要,可充电锌空气电池和水分解对此都寄予了厚望。在此,我们报道了一种单相双金属硫化镍钴((Ni,Co)S)作为用于OER和ORR的高效电催化剂。由于Ni和Co的协同组合,(Ni,Co)S在碱性电解质中对ORR、OER和HER表现出优异的电催化性能,第一性原理计算结果表明,吸附的O原子与HO分子反应形成*OOH是OER中的潜在限速步骤。重要的是,它可用作锌空气电池中的先进空气电极材料,在2 mA cm时显示出增强的充放电性能(充电电压为1.71 V,放电电压为1.26 V)、大比容量(在5 mA cm时为8