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Effect of Silver on the Shape of Palladium Nanoparticles

机译:银对钯纳米粒子形状的影响

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We report a facile route to prepare palladium-silver nanoparticles at considerably low temperature. First the controlled synthesis of palladium nanoparticles was performed via reduction of sodium tetrachloropalladate (II) in ethylene glycol in the presence of PVP(polyvinylpyrrolidone) as capping agent. The reaction was carried out at three different temperatures-80°C, 100°C and 120°C for one hour. Short reaction time and low synthesis temperature adds advantage to this method over others. Formed palladium nanoparticles were nearly spherical with the average particle size of 7.5±0.5 nm, 9.5±0.5 nm and 10.5±0.5 nm at 80°C, 100°C and 120°C respectively. Secondly, the palladium-silver nanoparticles were prepared by the simultaneous reduction of palladium and silver from their respective precursors in ethylene glycol at 100°C (optimized temperature). The shape and size distribution was studied by TEM (Transmission Electron Microscopy). The role of silver in transforming the shape of palladium nanoparticles from spherical to triangular has been discussed. Spherical symmetry of palladium nanoparticles is disturbed by the interaction of silver ions on the crystal facets of palladium nanoparticles. From UV-vis spectra, the absorption maxima of palladium nanoparticles at 205 nm and absorption maxima of palladium-silver nanoparticles at 272 nm revealed the partial evidence of their formation.
机译:我们报告了一个容易的途径,以在相当低的温度下制备钯 - 银纳米颗粒。首先,在PVP(聚乙烯基吡咯烷酮)作为封端剂的存在下,通过还原乙二醇中的四氯铝基酸钠(II)来进行钯纳米颗粒的受控合成。将反应在三种不同的温度-80℃,100℃和120℃下进行1小时。短反应时间和低合成温度对其他方法增加了优势。形成的钯纳米颗粒几乎是球形的,平均粒度为7.5±0.5nm,9.5±0.5nm和10.5±0.5nm,分别在80℃,100℃和120℃下。其次,通过在100℃(优化温度)的乙二醇中,通过同时从它们各自的前体中同时还原钯和银,制备钯 - 银纳米颗粒。通过TEM(透射电子显微镜)研究了形状和尺寸分布。已经讨论了银在转换钯纳米粒子的形状从球形到三角形的作用。通过银离子对钯纳米颗粒的晶体刻面的相互作用,钯纳米颗粒的球形对称性受到干扰。来自UV-Vis光谱,钯纳米粒子的吸收最大值在205nm处的钯 - 银纳米粒子的吸收最大值在272nm下显示出形成的部分证据。

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