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Palladium and Bimetallic Palladium–Nickel Nanoparticles Supported on Multiwalled Carbon Nanotubes: Application to Carbon–Carbon Bond-Forming Reactions in Water

机译:多壁碳纳米管上支撑的钯和双金属钯-镍纳米粒子:在水中碳-碳键形成反应中的应用

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摘要

Palladium and bimetallic Pd–Ni nanoparticles (NPs) protected by polyvinylpyrrolidone were prepared by the reduction-by-solvent method and deposited on multiwalled carbon nanotubes (MWCNTs). The catalytic activity of these NPs to carbon–carbon bond-forming reactions was studied by using 0.1 mol % Pd loading, at 120 °C for 1 h and water as a solvent under ligand-free conditions. The Suzuki–Miyaura reaction took place quantitatively for the cross-coupling of 4-bromoanisole with phenylboronic acid, better than those obtained with potassium phenyltrifluoroborate, with Pd50Ni50/MWCNTs as a catalyst and K2CO3 as a base and TBAB as an additive, with good recyclability during 4 cycles with some Ni leaching. The Hiyama reaction of 4-iodoanisole with trimethoxyphenylsilane, under fluoride-free conditions using 50 % aqueous NaOH solution, was performed with Pd/MWCNTs as a catalyst in 83 % yield with low recyclability. For the Mizoroki-Heck reaction 4-iodoanisole and styrene gave the corresponding 4-methoxystilbene quantitatively with Pd50Ni50/MWCNTs using K2CO3 as a base and TBAB as an additive although the recycle failed. In the case of the Sonogashira-Hagihara reaction, Pd/MWCNTs had to be used as a catalyst and pyrrolidine as a base for the coupling of 4-iodoanisole with phenylacetylene under copper-free conditions. The corresponding 4-methoxytolane was quantitatively obtained allowing the recycling of the catalyst during 3 cycles.
机译:通过溶剂还原法制备了聚乙烯吡咯烷酮保护的钯和双金属Pd-Ni纳米粒子(NPs),并将其沉积在多壁碳纳米管(MWCNTs)上。通过使用0.1 mol%的Pd负载量,在120°C下1 h和在无配体条件下用水作为溶剂,研究了这些NP对碳-碳键形成反应的催化活性。 Suzuki-Miyaura反应定量地进行了4-溴茴香醚与苯基硼酸的交叉偶联反应,优于以苯基三氟硼酸钾,以Pd50Ni50 / MWCNTs为催化剂,以K2CO3为碱,以TBAB为添加剂的苯硼酸所获得的那些。在4个循环中有一些镍浸出。在无氟条件下,使用50%的NaOH水溶液,以Pd / MWCNTs为催化剂,进行4-碘苯甲醚与三甲氧基苯基硅烷的Hiyama反应,产率为83%,回收率低。对于Mizoroki-Heck反应,尽管再循环失败,但4-碘苯甲醚和苯乙烯使用Pd50Ni50 / MWCNTs以K2CO3作为碱和TBAB作为添加剂定量给出了相应的4-甲氧基苯乙烯。在Sonogashira-Hagihara反应的情况下,必须使用Pd / MWCNT作为催化剂,并使用吡咯烷作为在无铜条件下将4-碘苯甲醚与苯乙炔偶联的碱。定量获得了相应的4-甲氧基戊烷,允许催化剂在3个循环中再循环。

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