Jiang Haoqing, Liu Xingtao, Zhu Meng-Nan, Xu Jin, An Licong, Sui Peng-Fei, Luo Jing-Li, Cheng Gary J
School of Industrial Engineering, Purdue University, West Lafayette, IN, USA.
The Institute of Technological Sciences, Wuhan University, Wuhan, China.
Sci Adv. 2022 Apr 22;8(16):eabm6541. doi: 10.1126/sciadv.abm6541.
Nanoalloys, especially high-entropy nanoalloys (HENAs) that contain equal stoichiometric metallic elements in each nanoparticle, are widely used in vast applications. Currently, the synthesis of HENAs is challenged by slow reaction kinetics that leads to phase segregation, sophisticated pretreatment of precursors, and inert conditions that preclude scalable fabrication of HENAs. Here, we report direct conversion of metal salts to ultrafine HENAs on carbonaceous support by nanosecond pulsed laser under atmospheric conditions. Because of the unique laser-induced thermionic emission and etch on carbon, the reduced metal elements were gathered to ultrafine HENAs and stabilized by defective carbon support. This scalable, facile, and low-cost method overcomes the immiscible issue and can produce various HENAs uniformly with a size of 1 to 3 nanometers and metal elements up to 11 with productivity up to 7 grams per hour. One of the senary HENAs exhibited excellent catalytic performance in oxygen reduction reaction, manifesting great potential in practical applications.
纳米合金,尤其是在每个纳米颗粒中含有等化学计量金属元素的高熵纳米合金(HENAs),被广泛应用于众多领域。目前,HENAs的合成面临着一些挑战,如反应动力学缓慢导致相分离、前驱体的复杂预处理以及阻碍HENAs规模化制备的惰性条件。在此,我们报道了在大气条件下通过纳秒脉冲激光将金属盐直接转化为碳质载体上的超细HENAs。由于独特的激光诱导热电子发射和对碳的蚀刻作用,还原的金属元素聚集形成超细HENAs,并由有缺陷的碳载体稳定化。这种可扩展、简便且低成本的方法克服了互不相溶的问题,能够均匀地生产各种HENAs,其尺寸为1至3纳米,金属元素多达11种,生产率高达每小时7克。其中一种六元HENAs在氧还原反应中表现出优异的催化性能,在实际应用中具有巨大潜力。