Yang Xinyi, Song Wanqing, Liao Kang, Wang Xiaoyang, Wang Xin, Zhang Jinfeng, Wang Haozhi, Chen Yanan, Yan Ning, Han Xiaopeng, Ding Jia, Hu Wenbin
School of Materials Science and Engineering, Tianjin University, Tianjin, China.
Joint School of National University of Singapore and Tianjin University, International Campus of Tianjin University, Fuzhou, China.
Nat Commun. 2024 Sep 19;15(1):8216. doi: 10.1038/s41467-024-52520-1.
Atomically dispersed single atom (SA) and atomic cluster (AC) metallic materials attract tremendous attentions in various fields. Expanding monometallic SA and AC to multimetallic SA/AC composites opens vast scientific and technological potentials yet exponentially increasing the synthesis difficulty. Here, we present a general energy-selective-clustering methodology to build the largest reported library of carbon supported bi-/multi-metallic SA/AC materials. The discrepancy in cohesive energy results into selective metal clustering thereby driving the symbiosis of multimetallic SA or/and AC. The library includes 23 bimetallic SA/AC composites, and expanded compositional space of 17 trimetallic, quinary-metallic, septenary-metallic SA/AC composites. We chose bimetallic MM to demonstrate the electrocatalysis utility. Unique decoupled active sites and inter-site synergy lead to 8/47 mV overpotential at 10 mA cm for alkaline/acidic hydrogen evolution and over 1000 h durability in water electrolyzer. Moreover, delicate modulations towards composition and configuration yield high-performance catalysts for multiple electrocatalysis systems. Our work broadens the family of atomically dispersed materials from monometallic to multimetallic and provides a platform to explore the complex composition induced unconventional effects.
原子级分散的单原子(SA)和原子簇(AC)金属材料在各个领域引起了极大的关注。将单金属SA和AC扩展到多金属SA/AC复合材料具有巨大的科学和技术潜力,但同时也成倍增加了合成难度。在此,我们提出了一种通用的能量选择性聚类方法,以构建已报道的最大的碳负载双金属/多金属SA/AC材料库。内聚能的差异导致选择性金属聚类,从而推动多金属SA或/和AC的共生。该库包括23种双金属SA/AC复合材料,以及17种三金属、五金属、七金属SA/AC复合材料的扩展组成空间。我们选择双金属MM来展示其电催化效用。独特的解耦活性位点和位点间协同作用导致在碱性/酸性析氢反应中,在10 mA cm时过电位为8/47 mV,并且在水电解槽中具有超过1000小时的耐久性。此外,对组成和构型的精细调节产生了适用于多种电催化系统的高性能催化剂。我们的工作将原子级分散材料家族从单金属扩展到多金属,并提供了一个探索复杂组成诱导的非常规效应的平台。