Department of Applied Chemistry, Osaka Institute of Technology, 5-16-1 Ohmiya, Asahi-ku, Osaka 535-8585, Japan.
Langmuir. 2010 May 4;26(9):6230-9. doi: 10.1021/la9039545.
Polypyrrole-palladium (PPy-Pd) nanocomposite was deposited in situ from aqueous solution onto micrometer-sized polystyrene (PS) latex particles. The PS seed particles and resulting composite particles were extensively characterized with respect to particle size and size distribution, morphology, surface/bulk chemical compositions, and conductivity. PPy-Pd nanocomposite loading onto the PS seed latex particles was systematically controlled over a wide range (10-60 wt %) by changing the weight ratio of the PS latex and PPy-Pd nanocomposite. Pd loading was also controlled between 6 and 33 wt %. The conductivity of pressed pellets increased with the PPy-Pd nanocomposite loading and four-point probe measurements indicated conductivities ranging from 3.0 x 10(-1) to 7.9 x 10(-6) S cm(-1). Hollow capsule and broken egg-shell morphologies were observed by scanning/transmission electron microscopy after extraction of the PS component from the composite particles, which confirmed a PS core and PPy-Pd nanocomposite shell morphology. X-ray diffraction confirmed that the production of elemental Pd and X-ray photoelectron spectroscopy indicated the existence of elemental Pd on the surface of the composite particles. Transmission electron microscopy confirmed that nanometer-sized Pd particles were distributed in the shell. The nanocomposite particles functioned as an efficient catalyst for Suzuki-type coupling reactions in aqueous media for the formation of carbon-carbon bonds.
聚吡咯-钯(PPy-Pd)纳米复合材料是从水溶液中就地沉积在微米级聚苯乙烯(PS)乳胶粒子上的。PS 种子粒子和所得的复合粒子在粒径和粒径分布、形态、表面/体化学组成和电导率方面得到了广泛的表征。通过改变 PS 乳胶和 PPy-Pd 纳米复合材料的重量比,可以在很宽的范围内(10-60wt%)系统地控制 PPy-Pd 纳米复合材料在 PS 种子乳胶粒子上的负载量。Pd 的负载量也控制在 6-33wt%之间。压片的电导率随着 PPy-Pd 纳米复合材料的负载量增加而增加,四点探针测量表明电导率范围为 3.0x10(-1)至 7.9x10(-6)Scm(-1)。通过从复合粒子中提取 PS 成分后,通过扫描/透射电子显微镜观察到空心胶囊和破碎蛋壳形态,这证实了 PS 核和 PPy-Pd 纳米复合材料壳形态的存在。X 射线衍射证实了元素 Pd 的生成,X 射线光电子能谱表明复合粒子表面存在元素 Pd。透射电子显微镜证实了纳米级 Pd 颗粒分布在壳层中。纳米复合材料粒子在水介质中作为铃木型偶联反应的有效催化剂,用于形成碳-碳键。