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Shape control in seed-mediated synthesis of non-elongated Cu nanoparticles and their optical properties

机译:seed-mediated形状控制合成的non-elongated铜纳米粒子及其光学属性

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摘要

Shape and surface chemistry control in copper nanoparticle synthesis is an important research area due to a wide range of developing applications of this material in catalysis, energy conversion, sensing and many others. In addition to being an inexpensive and abundant metal, copper is an attractive photocatalyst due to its optical properties in the visible range. Here, we report a facile, tunable and sustainable methodology for synthesizing Pd-seeded Cu nanoparticles with various shapes, including cubes, spheres, raspberry-like particles and cages stabilized with a bilayer of a cationic surfactant in aqueous media. The experimental and theoretical examination of the optical response in the series of synthesized nanoparticles revealed that the low-energy extinction peak is associated with electronic interband transitions in the metal, in contrast to a widely spread attribution of this peak to a plasmonic response in Cu nanoparticles.
机译:形状和表面化学控制铜纳米颗粒的合成是一个重要的研究由于广泛的发展这种材料在催化中的应用,能量转换、传感和许多其他人。除了作为一个便宜的和丰富的金属,铜是一个有吸引力的光催化剂对其光学性质在可见范围内。在这里,我们报告一个简单、可调谐和可持续方法合成Pd-seeded铜纳米粒子与各种形状,包括立方体、球体便会形成树莓和粒子笼子里稳定的阳离子的双分子层表面活性剂在水性介质。理论考试的光学响应在一系列的合成纳米颗粒表明低能灭绝峰值与电子相关的带间的转换相比之下,在金属广泛传播归因的峰电浆的反应在铜纳米粒子。

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