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Gold core@silver semishell Janus nanoparticles prepared by interfacial etching

机译:黄金core@silver semishell Janus纳米颗粒由界面腐蚀

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摘要

Gold core@silver semishell Janus nanoparticles were prepared by chemical etching of Au@Ag core-shell nanoparticles at the air/water interface. Au@Ag core-shell nanoparticles were synthesized by chemical deposition of a silver shell onto gold seed colloids followed by the self-assembly of 1-dodecanethiol onto the nanoparticle surface. The nanoparticles then formed a monolayer on the water surface of a Langmuir-Blodgett trough, and part of the silver shell was selectively etched away by the mixture of hydrogen peroxide and ammonia in the water subphase, where the etching was limited to the side of the nanoparticles that was in direct contact with water. The resulting Janus nanoparticles exhibited an asymmetrical distribution of silver on the surface of the gold cores, as manifested in transmission electron microscopy, UV-vis absorption, and X-ray photoelectron spectroscopy measurements. Interestingly, the Au@Ag semishell Janus nanoparticles exhibited enhanced electrocatalytic activity in oxygen reduction reactions, as compared to their Au@Ag and Ag@Au core-shell counterparts, likely due to a synergistic effect between the gold cores and silver semishells that optimized oxygen binding to the nanoparticle surface.
机译:黄金core@silver semishell Janus纳米颗粒是由化学腐蚀Au@Ag核壳纳米粒子在空气/水接口。合成的化学沉积银壳牌在黄金种子胶体紧随其后1-dodecanethiol到的自组装纳米粒子表面。形成了一个单层的水面上水槽,银色的一部分壳牌是选择性地蚀刻的混合物在水里的过氧化氢和氨子阶段,腐蚀是有限的直接的纳米颗粒与水接触。纳米粒子表现出一种不对称的银表面的金的分布的核心,主要表现在电子传播显微镜、紫外可见吸收和x射线光电子能谱测量。有趣的是,Au@Ag semishell杰纳斯纳米粒子表现出增强electrocatalytic氧还原反应,活动相比Au@Ag和Ag@Au核壳,可能由于协同效应金核和银semishells之间氧气结合纳米颗粒进行了优化表面。

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