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首页> 外文期刊>ACS Omega >Magnetic Fe3O4-Supported Gold Nanoflowers with Lattice-Selected Surfaces: Preparation and Catalytic Performance
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Magnetic Fe3O4-Supported Gold Nanoflowers with Lattice-Selected Surfaces: Preparation and Catalytic Performance

机译:磁FE3O4支撑的金纳纶,配有晶格选择的表面:制备和催化性能

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Nanoflowers (NFs)—shape-controlled noble metal nanocrystals—have garnered significant attention because of their novel catalytic properties and applicability. In this paper, we report the preparation and catalytic performance of a magnetic Fe_(3)O_(4)-supported AuNF catalyst with a clean surface. The magnetically supported AuNFs were obtained by using magnetic Fe_(3)O_(4) as the support. However, when nonmagnetic γ-Al_(2)O_(3) was utilized as the support, the AuNFs did not exhibit a magnetic response. These supported AuNFs were utilized to catalyze the oxidation of 1-phenylethyl alcohol to acetophenone using air (1 atm) as the oxidant. The rate of formation of acetophenone using supported AuNFs was 8-fold higher than that of acetophenone using supported spherical Au nanoparticles of comparable size. In addition, the Fe_(3)O_(4)-supported AuNFs exhibited a higher rate of formation of acetophenone than the Al_(2)O_(3)-supported AuNFs. The Fe_(3)O_(4)-supported AuNFs were recovered using a magnet, and the recovered catalyst was reused under identical catalytic reaction conditions. The rate of formation of acetophenone using recovered Fe_(3)O_(4)-supported AuNFs remained unchanged, demonstrating no loss of catalytic activity.
机译:纳米轧辊(NFS) - Shape控制的贵金属纳米晶体 - 由于其新的催化性能和适用性而获得了显着的关注。在本文中,我们通过清洁表面报道了磁性Fe_(3)O_(4)-SUPF催化剂的制备和催化性能。通过使用磁FE_(3)O_(4)作为支持来获得磁支持的AUNF。然而,当使用非磁性γ-AL_(2)O_(3)作为载体时,AUNFS没有表现出磁响应。这些支持的AUNFS用于使用空气(1atm)作为氧化剂催化1-苯基乙醇与苯乙酮的氧化。使用负载型AUNF的乙酮形成酸粒子的形成率高于使用负载的球形Au纳米粒子的相当尺寸的苯乙酮的8倍。此外,FE_(3)O_(4)-Upported AUNFS表现出比AL_(2)O_(3)-OUPPORTED AUNF的致苯甲酮的形成率较高。使用磁铁回收Fe_(3)O_(4)-Supported AUNFS,并在相同的催化反应条件下重复回收的催化剂。使用回收的Fe_(3)O_(4)-Supported AUNF的形成酸速率保持不变,展示了催化活性的损失。

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