Instituto Universitario de Tecnología Química CSIC-UPV, Universidad Politécnica de Valencia, Av. De los Naranjos s/n, 46022 Valencia, Spain.
Chemistry. 2011 Feb 18;17(8):2467-78. doi: 10.1002/chem.201002777. Epub 2011 Jan 17.
Copper(II) oxide nanoparticles supported on magnesia have been prepared from Cu(II) supported on magnesia by hydrogen reduction at 400 °C followed by storage under ambient conditions. X-ray photoelectron spectroscopy of the material clearly shows that immediately after the reduction copper(0)-metal nanoparticles are present on the magnesia support, but they undergo fast oxidation to copper oxide upon contact with the ambient for a short time. TEM images show that the catalytically active CuO/MgO material is formed of well-dispersed copper oxide nanoparticles supported on fibrous MgO. CuO/MgO exhibits a remarkable catalytic activity for the monoborylation of aromatic, aliphatic, terminal, and internal alkynes, the products being formed with high regio- (borylation at the less substituted carbon) and stereoselectivity (trans-configured). CuO/MgO exhibits complete chemoselectivity towards the monoborylation of alkynes in the presence of alkenes. Other metal nanoparticles such as gold or palladium are inactive towards borylation, but undergo undesirable oligomerization or partial hydrogenation of the C≡C triple bond. In contrast, platinum, either supported on magnesia or on nanoparticulate ceria, efficiently promotes the stereoselective diborylation of alkynes to yield a cis-configured diboronate alkene. By using platinum as the catalyst we have developed a tandem diborylation/hydrogenation reaction that gives vic-diboronated alkanes from alkynes in one pot.
在 400°C 下通过氢气还原负载在氧化镁上的 Cu(II),然后在环境条件下储存,制备了负载在氧化镁上的氧化铜纳米粒子。该材料的 X 射线光电子能谱清楚地表明,还原后立即在氧化镁载体上存在铜(0)-金属纳米粒子,但它们在与环境接触很短时间后迅速氧化为氧化铜。TEM 图像显示,催化活性的 CuO/MgO 材料由分散在纤维状氧化镁上的氧化铜纳米粒子组成。CuO/MgO 对芳族、脂肪族、末端和内部炔烃的单硼化反应表现出显著的催化活性,产物具有高区域选择性(在取代较少的碳原子上硼化)和立体选择性(反式构型)。在烯烃存在的情况下,CuO/MgO 对炔烃的单硼化反应具有完全的化学选择性。其他金属纳米粒子,如金或钯,对硼化反应没有活性,但会发生不希望的 C≡C 三键的齐聚或部分加氢。相比之下,铂无论是负载在氧化镁上还是负载在纳米级氧化铈上,都能有效地促进炔烃的立体选择性二硼化反应,生成顺式构型的二硼酸烯。通过使用铂作为催化剂,我们开发了一种串联的二硼化/加氢反应,可将炔烃一锅法转化为邻二硼化烷烃。