Jiang Hangwei, Chen Xiya, Cui Danlan, Lu Kun, Kong Xiao, Zhang Xingguang
School of Materials and Chemistry, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, China.
Materials (Basel). 2023 Apr 16;16(8):3139. doi: 10.3390/ma16083139.
Conventional methods to prepare supported metal catalysts are chemical reduction and wet impregnation. This study developed and systematically investigated a novel reduction method based on simultaneous TiAlC fluorine-free etching and metal deposition to prepare gold catalysts. The new series of Au/TiAlCTy catalysts were characterized by XRD, XPS, TEM, and SEM and were tested in the selective oxidation of representative aromatic alcohols to aldehydes. The catalytic results demonstrate the effectiveness of the preparation method and better catalytic performances of Au/TiAlCT, compared with those of catalysts prepared by traditional methods. Moreover, this work presents a comprehensive study on the influence of calcination in air, H, and Ar, and we found that the catalyst of Au/TiAlCT-Air600 obtained by calcination in air at 600 °C performed the best, owing to the synergistic effect between tiny surface TiO species and Au NPs. The tests of reusability and hot filtration confirmed the catalyst stability.
制备负载型金属催化剂的传统方法是化学还原和湿浸渍法。本研究开发并系统研究了一种基于TiAlC同时无氟蚀刻和金属沉积的新型还原方法来制备金催化剂。通过XRD、XPS、TEM和SEM对新系列的Au/TiAlCTy催化剂进行了表征,并在代表性芳香醇选择性氧化为醛的反应中进行了测试。催化结果表明了该制备方法的有效性,与传统方法制备的催化剂相比,Au/TiAlCT具有更好的催化性能。此外,这项工作对在空气、氢气和氩气中煅烧的影响进行了全面研究,我们发现,在600℃空气中煅烧得到的Au/TiAlCT-Air600催化剂表现最佳,这归因于微小的表面TiO物种与Au NPs之间的协同效应。可重复使用性和热过滤测试证实了催化剂的稳定性。