Jimenez Victoria L, Georganopoulou Dimitra G, White Ryan J, Harper Amanda S, Mills Allan J, Lee Dongil, Murray Royce W
Kenan Laboratories of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.
Langmuir. 2004 Aug 3;20(16):6864-70. doi: 10.1021/la049274g.
The nucleation-growth-passivation Brust reaction has been modified so as to enrich the product in useful quantities of a 38-atom gold nanoparticle coated with a hexanethiolate monolayer. Two modifications are described, using -78 degrees C reduction temperature and a hyperexcess of thiol. Compositional evidence is presented that establishes the product as a Au38(C6)24 hexanethiolate monolayer protected cluster (MPC), based on transmission electron microscopy, laser ionization-desorption mass spectrometry, thermogravimetric analysis, and elemental analysis. Reverse phase HPLC confirms the relatively good monodispersity of the MPC products, but high-resolution double-column HPLC reveals that the MPCs are a mixture of closely related but chromatographically distinct products. Voltammetry, low energy spectrophotometry, and spectroelectrochemistry reveal, respectively, a 1.6 eV electrochemical energy gap between the first oxidation and the first reduction, an optical HOMO-LUMO energy absorbance edge at 1.3 eV, and a bleaching of optical absorbance near the 1.3 eV band edge that accompanies electrochemical oxidation of the nanoparticle.
成核-生长-钝化的布斯特反应已被改进,以便大量富集有用量的、表面包覆有己硫醇单层的38原子金纳米颗粒。本文描述了两种改进方法,即使用-78℃的还原温度和过量的硫醇。基于透射电子显微镜、激光电离-解吸质谱、热重分析和元素分析,给出了成分证据,确定产物为Au38(C6)24己硫醇单层保护簇(MPC)。反相高效液相色谱证实了MPC产物具有相对较好的单分散性,但高分辨率双柱高效液相色谱显示,MPC是一系列密切相关但色谱上不同的产物的混合物。伏安法、低能分光光度法和光谱电化学分别揭示,在第一次氧化和第一次还原之间存在1.6 eV的电化学能隙,在1.3 eV处有一个光学HOMO-LUMO能量吸收边缘,并在纳米颗粒电化学氧化时,在1.3 eV带边缘附近出现光吸收漂白现象。