肉桂醛
选择性
催化作用
微型多孔材料
肉桂醇
化学工程
复合数
色散(光学)
粒径
化学
纳米颗粒
材料科学
纳米技术
有机化学
物理化学
复合材料
工程类
物理
光学
作者
Miao Zhang,Yuhao Sun,Xuerong Zhou,Kaixuan Yang,Libo Sun,Caixia Qi,Mingming Zhang,Mingming Zhang,Mingming Zhang
标识
DOI:10.1016/j.cej.2023.147595
摘要
Recycling of supported Au catalysts is challenging because of aggregation or loss of Au. Here, we report a strategy for introducing ZIF-8 into traditional Au/Al2O3 surface. The introduction of ZIF-8 can not only provide higher selectivity for the reaction products, but also prevent the loss or aggregation of the Au catalyst. From a series of characterizations, it can be seen that the ZIF-8 decorated Au/Al2O3 hybrid material Au@ZA (Z refers to ZIF-8, A refers to Al2O3) was successfully prepared. Au nanoparticles have better dispersion on the composite carrier, and the particle size is smaller. In the hydrogenation reaction of cinnamaldehyde (CAL), the Au@ZA composite catalyst has both the high chemical stability and the high selectivity of cinnamyl alcohol (COL) due to the micropore size effect of ZIF-8. The Au@ZA catalyst has ∼ 85 % COL selectivity when the CAL conversion is close to 100 %. And after 8 times of repeated use, the conversion of CAL and the selectivity of COL did not decrease significantly. It should be noted that just when a small amount of ZIF-8 is present, the synergistic catalytic effect mentioned above can be produced.
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