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Direct Synthesis of Palladium Nanocrystals in Aqueous Solution with Systematic Shape Evolution

机译:具有系统形状演变的水溶液中钯纳米晶体的直接合成

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Palladium octahedra, truncated octahedra, cuboctahedra, truncated cubes, and nanocubes with sizes of tens of nanometers have been synthesized in an aqueous mixture of H2PdCl4 solution, cetyltrimethylammonium chloride (CTAC) surfactant, KBr solution, dilute KI solution, and ascorbic acid solution at 35 degrees C for 30 min. By tuning the amount of dilute KBr solution introduced, particle shape control can be achieved Adjusting the volumes of the Pd precursor and KBr solutions added, smaller and larger Pd nano crystals were obtained with excellent shape control. Extensive structural and optical characterization of these nanocrystals has been performed. Two absorption bands in the ultraviolet region can be discerned for these Pd nanocrystals. Concave Pd cubes can also be prepared. Pd cubes were found to grow at a faster rate than that for the formation of octahedra. The concentrations of KBr and KI in the solution are so low that spectral shifts were not detected upon their addition to the solution. The Pd nanocrystals can readily be used for various applications after simple removal of surfactant.
机译:在35°C的H2PdCl4溶液,十六烷基三甲基氯化铵(CTAC)表面活性剂,KBr溶液,稀KI溶液和抗坏血酸溶液的水溶液混合物中合成了八面体的钯八面体,截短的八面体,立方八面体,截头的立方和纳米立方体。摄氏度30分钟。通过调节引入的稀KBr溶液的量,可以实现颗粒形状控制。调节Pd前驱体和KBr溶液的加入量,可以通过良好的形状控制获得越来越大的Pd纳米晶体。已经对这些纳米晶体进行了广泛的结构和光学表征。对于这些Pd纳米晶体,在紫外区域中可以看到两个吸收带。也可以准备凹面的Pd立方体。发现钯立方体的生长速度快于八面体的形成速度。溶液中KBr和KI的浓度非常低,以至于在将它们添加到溶液中时均未检测到光谱偏移。简单去除表面活性剂后,Pd纳米晶体可轻松用于各种应用。

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