State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, P.O. Box 98, Beijing 100029, China.
Dalton Trans. 2019 Dec 28;48(48):17741-17751. doi: 10.1039/c9dt03663f. Epub 2019 Nov 20.
A series of PdCo alloy nanocluster (NC) catalysts x-PdCo/Co(Mg or Ni)Al-LDH (x: Pd loading, r: Co/Pd molar ratio) were synthesized by immobilizing ultrafine PdCo-PVP NCs on flower-like layered double hydroxide (LDH) supports. The sizes of PdCo alloy NCs of the catalysts can be elaborately tuned in ∼1.6-3.2 nm by both Co/Pd ratios and Pd loadings, and the PdCo NCs are mainly dispersed on the edge sites of LDH nanosheets upon a flower-like morphology. The PdCo bimetallic catalysts 0.81-PdCo/MgAl-LDH (2.6 ± 0.6 nm), 0.86-PdCo/MgAl-LDH (2.3 ± 0.7 nm) and 0.79-PdCo/MgAl-LDH (3.2 ± 0.9 nm) exhibit enhanced activity compared with the monometallic Pd catalyst for Heck coupling of iodobenzene with styrene. Particularly, 0.86-PdCo/MgAl-LDH shows the highest activity, which can be attributed to its smallest PdCo alloy NCs, and the maximum electron density of the Pd center resulted from the electron transfer from Co and the strongest PdCo NCs - LDH synergistic effect. 0.67-PdCo/CoAl-LDH shows much better activity than those of 0.64-PdCo/NiAl-LDH and 0.86-PdCo/MgAl-LDH. The lowest Pd loading sample 0.01-PdCo/CoAl-LDH (1.6 ± 0.4 nm) shows an ultrahigh turnover frequency of 163 000 h (Pd: 1.9 × 10 mol%), which is the highest value obtained so far. Meanwhile, the catalyst shows excellent adaptability for the substrates and can be reused for 12 runs without significant loss of activity. The present work may provide a new idea for the simple and green synthesis of ultrafine Pd-based non-noble bimetallic catalysts for varied catalytic processes.
通过将超细微的 PdCo-PVP NCs 固定在花状层状双氢氧化物 (LDH) 载体上,合成了一系列 PdCo 合金纳米团簇 (NC) 催化剂 x-PdCo/Co(Mg 或 Ni)Al-LDH(x:Pd 负载量,r:Co/Pd 摩尔比)。通过 Co/Pd 比和 Pd 负载量可以精细调节催化剂中 PdCo 合金 NC 的尺寸,约为 1.6-3.2nm,并且 PdCo NC 主要分散在花状形态的 LDH 纳米片的边缘位置上。与单金属 Pd 催化剂相比,PdCo 双金属催化剂 0.81-PdCo/MgAl-LDH(2.6±0.6nm)、0.86-PdCo/MgAl-LDH(2.3±0.7nm)和 0.79-PdCo/MgAl-LDH(3.2±0.9nm)在碘苯与苯乙烯的 Heck 偶联反应中表现出更高的活性。特别是 0.86-PdCo/MgAl-LDH 表现出最高的活性,这归因于其最小的 PdCo 合金 NCs 和 Pd 中心的最大电子密度,这是由于 Co 的电子转移和最强的 PdCo NCs-LDH 协同效应所致。0.67-PdCo/CoAl-LDH 的活性明显优于 0.64-PdCo/NiAl-LDH 和 0.86-PdCo/MgAl-LDH。最低 Pd 负载样品 0.01-PdCo/CoAl-LDH(1.6±0.4nm)的周转频率高达 163000h(Pd:1.9×10mol%),这是迄今为止获得的最高值。同时,该催化剂对底物具有出色的适应性,可重复使用 12 次而活性无明显损失。本工作为简单绿色合成用于各种催化过程的超细 Pd 基非贵金属双金属催化剂提供了新的思路。