双金属银-铂不同金属比纳米粒子的电化学和光学带隙

F. Okumu, M. Matoetoe
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引用次数: 5

摘要

同时柠檬酸还原不同比例的银和铂离子导致核-壳纳米结构双金属(BM)的形成。透射电子显微镜(TEM)和x射线衍射XRD数据显示,纳米颗粒由银核和铂壳组成,平均尺寸为22.2 nm,而铂纳米颗粒和银纳米颗粒的平均尺寸分别为2.5和60.0 nm。Tauc计算的光学带隙范围为3.55 ~ 4.02 eV,而基于Breda方程的电化学带隙范围为1.45 ~ 1.80 eV。这些带隙范围的变化可能与原子间相互作用、形态和量子约束有关。一般来说,双金属相对于单金属具有更高的带隙。Ag: Pt比为3:1时具有最大的光学带隙和最小的粒径。而1:3的比例具有最大的电化学带隙和最大的粒径。表明银和铂在光学和电化学中的带隙依赖于银和铂的量。关键词:光学,电化学,带隙,双金属,纳米颗粒。
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Electrochemical and optical band gaps of bimetallic silver-platinum varying metal ratios nanoparticles
Simultaneous citrate reduction of various ratios of silver and platinum ions leads to the formation of core-shell nanostructured bimetallics (BM). Transmission electron microscopy (TEM) and X-ray diffraction XRD data of the BMs depicted crystalline core-shell nanoparticles consisting of Ag core and Pt shell with an average size of 22.2 nm in contrast to the  Pt NPs and Ag NPs monometallics  average sizes of 2.5 and 60.0 nm respectively. Tauc’s calculated optical band gaps ranged from 3.55 to 4.02 eV while the electrochemical based on Breda’s equation had a range of 1.45 to 1.80 eV. These band gaps range variation maybe due to inter atomic interaction, morphology and quantum confinement. Generally, bimetallics had higher band gaps relative to monometallics. The Ag: Pt ratio of 3:1 had the highest optical band gap and the smallest particle size. While the ratio of 1:3 had the highest electrochemical band gap as well as the largest particle size among the BMs. Suggesting band gap dependence on amount of Ag and Pt for optical and electrochemical respectively. Key words: Optical, electrochemical, band gaps, bimetallic, nanoparticles.
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