Shao Jieling, Liu Miaomiao, Wang Zizhu, Li Kaijie, Bao Bo, Zhao Shuangliang, Zhou Shenghu
State Key Laboratory of Chemical Engineering and School of Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China.
ACS Omega. 2019 Sep 11;4(13):15621-15627. doi: 10.1021/acsomega.9b02117. eCollection 2019 Sep 24.
Bimetallic nanocatalysts, with efficient and controllable catalytic performance, have a promising application in chemical production. In this study, surface Pt-rich bimetallic AuPt nanoparticles with different Pt/Au ratios were prepared and tested in selective hydrogenation reactions of substituted nitroaromatics. Au nanoparticles were first prepared with -butyllithium as a rapid reducer, which were further used as seeds in the slow growth process of Pt atoms. Because of the employed sequential reduction method and the following atom diffusion, surface Pt-rich bimetallic AuPt nanoparticles were obtained. Compared with the uniform AuPt alloy nanocatalysts synthesized by the co-reduction method with -butyllithium as the reducer and monometallic Pt nanocatalysts, the obtained surface Pt-rich AuPt bimetallic nanocatalysts presented an enhanced catalytic selectivity or activity. The performance enhancement is assigned to the optimized Au/Pt interaction in the surface Pt-rich bimetallic nanostructures. This work demonstrates that the optimization of the stoichiometry and construction of bimetallic materials is a feasible method to synthesize controllable and efficient nanocatalysts.
双金属纳米催化剂具有高效且可控的催化性能,在化学生产中有着广阔的应用前景。在本研究中,制备了具有不同Pt/Au比的表面富Pt双金属AuPt纳米颗粒,并在取代硝基芳烃的选择性加氢反应中进行了测试。首先用丁基锂作为快速还原剂制备Au纳米颗粒,然后将其作为种子用于Pt原子的缓慢生长过程。由于采用了顺序还原法以及随后的原子扩散,得到了表面富Pt的双金属AuPt纳米颗粒。与以丁基锂为还原剂通过共还原法合成的均匀AuPt合金纳米催化剂和单金属Pt纳米催化剂相比,所制备的表面富Pt的AuPt双金属纳米催化剂表现出更高的催化选择性或活性。性能的提高归因于表面富Pt双金属纳米结构中优化的Au/Pt相互作用。这项工作表明,双金属材料的化学计量比和结构的优化是合成可控且高效纳米催化剂的一种可行方法。