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Gold nanobipyramid-embedded silver-platinum hollow nanostructures for monitoring stepwise reduction and oxidation reactions

机译:黄金nanobipyramid-embedded silver-platinum空心纳米结构监测逐步减少和氧化反应

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摘要

Metal hollow nanostructures based on gold nanobipyramids (Au NBPs) are of great interest for the combination of tunable plasmonic resonances and excellent physicochemical properties. Based on the core-shell Au NBP@Ag nanorods with desired sizes, herein we reported the synthesis and growth mechanism of Au NBP-embedded AgPt hollow nanostructures with tunable thickness and size. The Au NBP@AgPt nanoframes were obtained at lower temperature, in which cetyltrimethylammonium bromine (CTAB) was applied as a capping agent to guide the deposition of Pt atoms on the edges and corners of Au NBPs@Ag nanorods. With the increase of reaction temperature, the Au NBP@AgPt nanoframes convert into nanocages due to the atomic migration to the surfaces. The surface plasmon resonance of the Au NBP@AgPt hollow nanostructure shifts from red to blue, which is ascribed to the changes in coverage area and location site of the AgPt alloy. When CTAB was replaced by cetyltrimethylammonium chloride (CTAC), Au NBP@AgPt nanocages dominate the product. The surface roughness and thickness of the nanocages can be controlled by the temperature and the amount of Pt precursor. Moreover, Au NBP@AgPt hollow nanostructures show excellent surface-enhanced Raman scattering and exhibit remarkable stability in harsh environments. Taking into account the advantages of the plasmonic property (Au NBPs), catalytic activity (Pt) and plasmon-enhanced signal (Ag), the Au NBP@AgPt hollow nanostructures are a promising candidate for technological applications in catalytic reactions.
机译:根据黄金金属空心纳米结构nanobipyramids (Au平衡)的极大兴趣可调电浆的结合共振和优秀的物理化学属性。纳米棒与所需的大小,在此我们报告非盟的合成和生长机制NBP-embedded AgPt空心纳米结构可调厚度和大小。nanoframes得到较低的温度,在cetyltrimethylammonium溴(CTAB)是什么作为覆盖剂适用于指导Pt原子沉积的边缘和角落的非盟NBPs@Ag纳米棒。反应温度、非盟NBP@AgPt nanoframes转换成nanocages由于原子迁移到表面。非盟NBP@AgPt空心纳米结构的共振从红色到蓝色的变化,这是归因于覆盖范围和位置的变化AgPt合金。cetyltrimethylammonium电导率(CTAC)NBP@AgPt nanocages主导产品。nanocages的表面粗糙度和厚度可以由温度和控制吗Pt的前兆。空心纳米结构显示良好的表面增强拉曼散射和展览显著稳定在严酷的环境下。考虑的优点电浆性质(Au平衡),催化活性(Pt)和plasmon-enhanced信号(Ag),非盟NBP@AgPt空心纳米结构是一种很有前途的候选人技术应用催化反应。

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