Department of Chemistry, Carnegie Mellon University , Pittsburgh, Pennsylvania 15213, United States.
J Am Chem Soc. 2014 Mar 5;136(9):3673-9. doi: 10.1021/ja500121v. Epub 2014 Feb 25.
We report the synthesis and catalytic application of thermally robust gold nanoclusters formulated as Au99(SPh)42. The formula was determined by electrospray ionization and matrix-assisted laser desorption ionization mass spectrometry in conjunction with thermogravimetric analysis. The optical spectrum of Au99(SPh)42 nanoclusters shows absorption peaks at ~920 nm (1.35 eV), 730 nm (1.70 eV), 600 nm (2.07 eV), 490 nm (2.53 eV), and 400 nm (3.1 eV) in contrast to conventional gold nanoparticles, which exhibit a plasmon resonance band at 520 nm (for spherical particles). The ceria-supported Au99(SPh)42 nanoclusters were utilized as a catalyst for chemoselective hydrogenation of nitrobenzaldehyde to nitrobenzyl alcohol in water using H2 gas as the hydrogen source. The selective hydrogenation of the aldehyde group catalyzed by nanoclusters is a surprise because conventional nanogold catalysts instead give rise to the product resulting from reduction of the nitro group. The Au99(SPh)42/CeO2 catalyst gives high catalytic activity for a range of nitrobenzaldehyde derivatives and also shows excellent recyclability due to its thermal robustness. We further tested the size-dependent catalytic performance of Au25(SPh)18 and Au36(SPh)24 nanoclusters, and on the basis of their crystal structures we propose a molecular adsorption site for nitrobenzaldehyde. The nanocluster material is expected to find wide application in catalytic reactions.
我们报告了热稳定的金纳米簇 Au99(SPh)42 的合成及其催化应用。该配方通过电喷雾电离和基质辅助激光解吸电离质谱与热重分析相结合确定。Au99(SPh)42 纳米簇的光学光谱在 ~920nm(1.35eV)、730nm(1.70eV)、600nm(2.07eV)、490nm(2.53eV)和 400nm(3.1eV)处显示出吸收峰,与传统的金纳米粒子相比,后者在 520nm(对于球形粒子)处表现出等离子体共振带。负载在氧化铈上的 Au99(SPh)42 纳米簇被用作催化剂,用于在水中使用 H2 气体作为氢源,选择性催化硝基苯甲醛的氢化反应,生成硝基苯甲醇。纳米簇催化的醛基选择性氢化是一个惊喜,因为传统的纳米金催化剂反而会导致硝基还原的产物。Au99(SPh)42/CeO2 催化剂对一系列硝基苯甲醛衍生物表现出高催化活性,并且由于其热稳定性,还表现出优异的可循环性。我们进一步测试了 Au25(SPh)18 和 Au36(SPh)24 纳米簇的尺寸依赖性催化性能,并根据它们的晶体结构提出了硝基苯甲醛的分子吸附位。预计纳米簇材料将在催化反应中得到广泛应用。