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Mechanochemical Preparation of Pd(II) and Pt(II) Composites with Carbonaceous Materials and Their Application in the Suzuki-Miyaura Reaction at Several Energy Inputs

机译:含碳材料Pd(II)和Pt(II)复合材料的机械化学制备及其在几种能量输入下的Suzuki-Miyaura反应中

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摘要

Pd(II) and Pt(II) composites with activated carbon (AC), graphene oxide, and multiwalled carbon nanotubes were prepared by ball milling and used as catalysts for the Suzuki-Miyaura reaction, under several energy inputs (mechanical grinding, conventional heating, and microwave irradiation). The catalytic composites were characterized by ICP-MS, BET, XPS analyses, TEM, and SEM. The average particle size of the prepared composites was estimated to be in the range of 6–30 nm, while the loadings of Pd and Pt did not significantly affect the surface area of the AC support due to the tendency to agglomerate as observed by the TEM analysis. The Pd/AC composites exhibit high mechanochemical catalytic activity in cross-coupling of bromobenzene and phenylboronic acid with molar yields up to 80% with TON and TOF of 222 and 444 h , respectively, achieved with Pd(4.7 wt%)-AC catalyst under the liquid assisted grinding for 0.5 h at ambient conditions, using cyclohexene as an additive.
机译:通过球磨制备具有活性炭(AC),氧化石墨烯和多壁碳纳米管的Pd(II)和Pt(II)复合材料,并在几种能量输入(机械研磨,常规加热)下用作Suzuki-Miyaura反应的催化剂和微波辐射)。通过ICP-MS,BET,XPS分析,TEM和SEM对催化复合材料进行了表征。制备的复合材料的平均粒径估计在6–30 nm范围内,而TEM观察到,Pd和Pt的负载量由于聚结的趋势而不会显着影响AC载体的表面积。分析。 Pd / AC复合材料在溴苯和苯基硼酸的交叉偶联中表现出较高的机械化学催化活性,在Pd(4.7 wt%)-AC催化剂下在TON和TOF分别为222和444 h时的摩尔收率高达80%。使用环己烯作为添加剂在环境条件下进行液体辅助研磨0.5小时。

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