Zhang Yanji, Zhou Jicheng
Key Laboratory of Green Catalysis and Chemical Reaction Engineering of Hunan Province, School of Chemical Engineering Xiangtan University, Xiangtan 411105, Hunan Province, People's Republic of China.
Nanotechnology. 2020 May 1;31(29):295703. doi: 10.1088/1361-6528/ab81c4. Epub 2020 Mar 20.
We report a novel hybrid nano-structure Pt catalyst, by coating rare metal oxide (CeO or LaO) on the surface of SBA-15, then anchoring Pt nanoparticles on the CeO/SBA-15 or LaO/SBA-15 via a photochemical route. For the hydrogenation of benzaldehyde, the Pt/@-CeO/SBA-15 and Pt/@-LaO/SBA-15 catalysts demonstrated outstanding activity and excellent selectivity, much higher than that of Pt/CeO, Pt/LaO and Pt/SBA-15. In particular, the TOF of Pt/@-LaO/SBA-15 reached 2324 h, 2.3-fold higher than the atomically dispersed catalyst (Pd/TiO, 1002 h) in the literature. The superior catalytic performance was attributed to the special structure and the synergistic effect between the Pt nanoparticles and CeO/SBA-15(LaO/SBA-15). The content of metal oxide played an important role in the reaction, as only a suitable content of metal oxide could ensure that this hybrid structure would show the best performance.
我们报道了一种新型的混合纳米结构铂催化剂,通过在SBA - 15表面包覆稀土金属氧化物(CeO或LaO),然后通过光化学途径将铂纳米颗粒锚定在CeO/SBA - 15或LaO/SBA - 15上。对于苯甲醛的氢化反应,Pt/@-CeO/SBA - 15和Pt/@-LaO/SBA - 15催化剂表现出出色的活性和优异的选择性,远高于Pt/CeO、Pt/LaO和Pt/SBA - 15。特别是,Pt/@-LaO/SBA - 15的TOF达到2324 h,比文献中原子分散催化剂(Pd/TiO,1002 h)高2.3倍。优异的催化性能归因于特殊结构以及铂纳米颗粒与CeO/SBA - 15(LaO/SBA - 15)之间的协同效应。金属氧化物的含量在反应中起重要作用,因为只有合适含量的金属氧化物才能确保这种混合结构表现出最佳性能。