Qin Yin, Yu Tingting, Deng Sihao, Zhou Xiao-Ye, Lin Dongmei, Zhang Qian, Jin Zeyu, Zhang Danfeng, He Yan-Bing, Qiu Hua-Jun, He Lunhua, Kang Feiyu, Li Kaikai, Zhang Tong-Yi
School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), 518055, Shenzhen, China.
Spallation Neutron Source Science Center, 523803, Dongguan, China.
Nat Commun. 2022 Jul 1;13(1):3784. doi: 10.1038/s41467-022-31468-0.
Developing highly active and durable electrocatalysts for acidic oxygen evolution reaction remains a great challenge due to the sluggish kinetics of the four-electron transfer reaction and severe catalyst dissolution. Here we report an electrochemical lithium intercalation method to improve both the activity and stability of RuO for acidic oxygen evolution reaction. The lithium intercalates into the lattice interstices of RuO, donates electrons and distorts the local structure. Therefore, the Ru valence state is lowered with formation of stable Li-O-Ru local structure, and the Ru-O covalency is weakened, which suppresses the dissolution of Ru, resulting in greatly enhanced durability. Meanwhile, the inherent lattice strain results in the surface structural distortion of LiRuO and activates the dangling O atom near the Ru active site as a proton acceptor, which stabilizes the OOH* and dramatically enhances the activity. This work provides an effective strategy to develop highly efficient catalyst towards water splitting.
由于四电子转移反应动力学缓慢以及催化剂严重溶解,开发用于酸性析氧反应的高活性和耐用的电催化剂仍然是一个巨大的挑战。在此,我们报道一种电化学锂嵌入方法,以提高RuO用于酸性析氧反应的活性和稳定性。锂嵌入RuO的晶格间隙中,提供电子并使局部结构发生畸变。因此,Ru的价态降低,形成稳定的Li-O-Ru局部结构,并且Ru-O共价性减弱,这抑制了Ru的溶解,从而大大提高了耐久性。同时,固有的晶格应变导致LiRuO的表面结构畸变,并激活Ru活性位点附近的悬空O原子作为质子受体,从而稳定OOH*并显著提高活性。这项工作为开发用于水分解的高效催化剂提供了一种有效策略。