Yu Hongjie, Zhou Tongqing, Wang Ziqiang, Xu You, Li Xiaonian, Wang Liang, Wang Hongjing
State Key Laboratory Breeding Base of Green-Chemical Synthesis Technology, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou, Zhejiang, 310014, P. R. China.
Angew Chem Int Ed Engl. 2021 May 17;60(21):12027-12031. doi: 10.1002/anie.202101019. Epub 2021 Mar 10.
Metallene with fantastic physicochemical properties is considered as a potential candidate for oxygen reduction reaction (ORR). Controlling the morphology and structure of metallene can provide a great opportunity to improve its catalytic performance. Herein, defect-rich ultrathin porous Pd metallene (a sub-nanometer and curved metal nanosheet) is developed by facile wet-chemistry strategy for efficient and stable ORR electrocatalysis in alkaline electrolyte. The defect-rich porous Pd metallene provides abundant highly active sites and vacancy defects, showing superior ORR activity of 0.892 A mg at 0.9 V vs. the reversible hydrogen electrode. The mass activity is 5.1 and 16.8 times higher than those of commercial Pt/C and Pd/C, respectively, and maintains well after 5000 cycles. The strain effect and tunable electronic structure derived from highly curved sub-nanometer nanosheet morphology contribute to the excellent ORR performance by the optimization of oxygen binding ability on Pd. The superior catalytic performance of Pd metallene may open an avenue to design other metallene materials for various fields.
具有出色物理化学性质的金属烯被认为是氧还原反应(ORR)的潜在候选材料。控制金属烯的形态和结构可为提高其催化性能提供绝佳机会。在此,通过简便的湿化学策略制备了富含缺陷的超薄多孔钯金属烯(一种亚纳米级弯曲金属纳米片),用于在碱性电解质中进行高效稳定的ORR电催化。富含缺陷的多孔钯金属烯提供了丰富的高活性位点和空位缺陷,在相对于可逆氢电极0.9 V的电位下,表现出0.892 A mg的优异ORR活性。其质量活性分别比商业Pt/C和Pd/C高5.1倍和16.8倍,并且在5000次循环后仍保持良好。高度弯曲的亚纳米级纳米片形态所产生的应变效应和可调电子结构,通过优化钯上的氧结合能力,有助于实现优异的ORR性能。钯金属烯的优异催化性能可能为设计用于各个领域的其他金属烯材料开辟一条道路。