Department of Chemistry and Applied Biosciences, ETH Zurich, Institute for Chemical and Bioengineering, Honggerberg, HCI, C8093 Zurich, Switzerland.
Chemistry. 2010 Feb 15;16(7):2181-92. doi: 10.1002/chem.200902517.
The preparation of stable metal nanoparticles requires a strong interaction between the (organic) stabilizer and the metal surface that might alter the catalytic properties. This behavior has been described as "poisoning" since the stabilizer normally decreases the catalytic activity due to site blocking. Here we show a striking influence of the stabilizer on the selectivity in the hydrogenation of cinchonidine (CD) over poly(acrylic acid) (PAA)-stabilized Pt nanoparticles with well-defined shape distributions. In the hydrogenation of the heteroaromatic ring of cinchonidine in toluene, the diastereomeric excess of the (S)-hexahydrocinchonidine increased upon increasing Pt{111}/Pt{100} ratio, but this distinct shape selectivity was observed only after the oxidative removal of PAA at 473 K. The use of the as-prepared nanoparticles inverted the major diastereomer to R, and this isomer was formed also in acetic acid. This striking change in the diastereoselectivity indicates that poly(acrylic acid), which remains on the Pt surface after preparation, interacts with CD during hydrogenation almost as strongly as the solvent acetic acid. The PAA stabilizer plays a dual role: it allows one to control the size and shape of the nanoparticles during their synthesis, and it affects the rate and diastereoselectivity of the hydrogenation of CD probably through a "surface-localized acidification".
稳定金属纳米粒子的制备需要(有机)稳定剂与金属表面之间的强相互作用,这种相互作用可能会改变催化性能。这种行为通常被描述为“中毒”,因为稳定剂由于位阻作用通常会降低催化活性。在这里,我们展示了稳定剂对聚(丙烯酸)(PAA)稳定的具有明确形状分布的 Pt 纳米粒子在 cinchonidine(CD)加氢中选择性的显著影响。在甲苯中环化 cinchonidine 的杂芳环加氢中,随着 Pt{111}/Pt{100} 比例的增加,(S)-六氢 cinchonidine 的非对映过量增加,但只有在 473 K 下氧化去除 PAA 后才观察到这种明显的形状选择性。使用制备的纳米粒子将主要非对映异构体反转至 R,并且在乙酸中也形成了这种异构体。这种非对映选择性的显著变化表明,在加氢过程中,在制备后残留在 Pt 表面上的聚丙烯酸与 CD 相互作用几乎与溶剂乙酸一样强烈。PAA 稳定剂具有双重作用:它允许在合成过程中控制纳米粒子的尺寸和形状,并且可能通过“表面局部酸化”影响 CD 的加氢速率和非对映选择性。