Wang Hongjing, Li Yunju, Liu Songliang, Yu Hongjie, Deng Kai, Wang Ziqiang, Xu You, Wang Liang
State Key Laboratory Breeding Base of Green-Chemical Synthesis Technology, College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, P. R. China.
Inorg Chem. 2023 Sep 18;62(37):15157-15163. doi: 10.1021/acs.inorgchem.3c02276. Epub 2023 Sep 2.
Pd-based metallene is regarded as an efficient catalyst in the field of oxygen reduction reaction (ORR) because of its fantastic physicochemical features. The morphological structure control, lattice strain engineering, and electronic structure modulation of Pd-based metallene are effective tactics to enhance its electrocatalytic performance. In this work, we fabricate atomically thin B-doped Pd metallene nanoribbons (B-Pd MNRs) for efficient alkaline ORR. The atomically thin nanoribbon structure of B-Pd MNRs can expose many surface atoms as catalytically active sites. Moreover, the incorporation of boron effectively induces the lattice expansion and modulates the electronic structure of Pd, which can synergistically weaken the adsorption of intermediate species on B-Pd MNRs. Therefore, the B-Pd MNRs display excellent activity and durability for ORR. This work opens an avenue to the synthesis of atomically thin heteroatom-doped metallene nanoribbons for energy electrocatalytic applications.
基于钯的金属烯因其出色的物理化学特性,被视为氧还原反应(ORR)领域的高效催化剂。对基于钯的金属烯进行形态结构控制、晶格应变工程和电子结构调制,是提高其电催化性能的有效策略。在这项工作中,我们制备了用于高效碱性ORR的原子级薄的硼掺杂钯金属烯纳米带(B-Pd MNRs)。B-Pd MNRs的原子级薄纳米带结构可使许多表面原子暴露为催化活性位点。此外,硼的掺入有效地诱导了晶格膨胀并调制了钯的电子结构,这可以协同减弱中间物种在B-Pd MNRs上的吸附。因此,B-Pd MNRs对ORR表现出优异的活性和耐久性。这项工作为合成用于能量电催化应用的原子级薄杂原子掺杂金属烯纳米带开辟了一条途径。