Zuo Lu-Jie, Xu Shi-Long, Wang Ao, Yin Peng, Zhao Shuai, Liang Hai-Wei
Department of Chemistry, University of Science and Technology of China, Hefei 230026, China.
Inorg Chem. 2022 Feb 14;61(6):2719-2723. doi: 10.1021/acs.inorgchem.1c03965. Epub 2022 Feb 2.
Supported bimetallic nanoparticle catalysts with small size have attracted wide research attention in catalysis but are difficult to synthesize because high-temperature annealing required for alloying inevitably accelerates metal sintering and leads to larger particles. Here, we report a simple and scalable "critical interparticle distance" method for the synthesis of a family of bimetallic nanocluster catalysts with an average particle size of only 1.5 nm by using large-surface-area carbon black supports at high temperatures, which consist of 12 diverse combinations of 3 noble metals (Pt, Ru, and Rh) and 4 other metals (Cr, Fe, Zr, and Sn). In this strategy, high-temperature treatments ensure the formation of alloyed bimetallic nanoparticles and enlargement of the interparticle distance on high-surface-area supports significantly suppresses metal sintering. The prepared ultrafine PtSn and RuSn nanocluster catalysts exhibited enhanced performance in catalyzing the synthesis of aromatic secondary amines and the selective hydrogenation of furfural, respectively.
具有小尺寸的负载型双金属纳米颗粒催化剂在催化领域引起了广泛的研究关注,但由于合金化所需的高温退火不可避免地加速了金属烧结并导致颗粒变大,因此难以合成。在此,我们报告了一种简单且可扩展的“临界粒子间距离”方法,通过在高温下使用大表面积炭黑载体来合成一系列平均粒径仅为1.5 nm的双金属纳米簇催化剂,这些催化剂由3种贵金属(Pt、Ru和Rh)与4种其他金属(Cr、Fe、Zr和Sn)的12种不同组合组成。在该策略中,高温处理确保了合金化双金属纳米颗粒的形成,并且大表面积载体上颗粒间距离的增大显著抑制了金属烧结。所制备的超细PtSn和RuSn纳米簇催化剂分别在催化芳香仲胺的合成和糠醛的选择性氢化反应中表现出增强的性能。