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SYNTHESIS AND CHARACTERIZATION OF NANO METALS WITH CORE-SHELL STRUCTURE
作者姓名:Ru-ShiLiu  Hau-MingChen  Shu-FenHu
作者单位:[1]DepartmentofChemistry,TaiwanUniversityTaipei106,China [2]NanoDeviceLaboratories,Hsinchu300,China
摘    要:Using AUcore-Ptshell as an example, the synthesis and characterization of nano metals with core-shell structure is demonstrated in a systematic study on the amount-dependent morphology change in a series of Au-Pt bimetallic nanoparticles synthesized using chemical reduction. While the amount of Au precursor is kept constant throughout the whole series of compounds to obtain a fixed Au core size (-7.5 nm), the Au/Pt ratio is varied from 1/1 to 1/4 in order to synthesize Pt shell layers of different thickness. We observed a remarkable shift of surface plasmon band to around 410 nm. With the aid of high resolution transmission electron microscope (HRTEM) and energy-dispersive spectrometer (EDS), the composition of the shell layer is found to be a Pt-enriched Au-Pt alloy. As the amount of Pt increases, string-like Pt clusters form on the surface of the nanoparticles. The average diameter of these Pt clusters is about 2 nm. This special structure may possess unique catalytic properties.

关 键 词:纳米颗粒  中心壳结构    双金属  光学性质

SYNTHESIS AND CHARACTERIZATION OF NANO METALS WITH CORE-SHELL STRUCTURE
Ru-ShiLiu Hau-MingChen Shu-FenHu.SYNTHESIS AND CHARACTERIZATION OF NANO METALS WITH CORE-SHELL STRUCTURE[J].China Particuology,2004,2(4):160-163.
Authors:Ru-Shi Liu  Hau-Ming Chen and Shu-Fen Hu
Institution:Ru-Shi Liu1,Hau-Ming Chen1 and Shu-Fen Hu2 1Department of Chemistry,Taiwan University,Taipei 106,China 2Nano Device Laboratories,Hsinchu 300,China
Abstract:Using Aucore-Ptshell as an example, the synthesis and characterization of nano metals with core-shell structure is demonstrated in a systematic study on the amount-dependent morphology change in a series of Au-Pt bi-metallic nanoparticles synthesized using chemical reduction. While the amount of Au precursor is kept constant throughout the whole series of compounds to obtain a fixed Au core size (~7.5 nm), the Au/Pt ratio is varied from 1/1 to 1/4 in order to synthesize Pt shell layers of different thickness. We observed a remarkable shift of surface plasmon band to around 410 nm. With the aid of high resolution transmission electron microscope (HRTEM) and energy-dispersive spectrometer (EDS), the composition of the shell layer is found to be a Pt-enriched Au-Pt alloy. As the amount of Pt in-creases, string-like Pt clusters form on the surface of the nanoparticles. The average diameter of these Pt clusters is about 2 nm. This special structure may possess unique catalytic properties.
Keywords:nanoparticle  bimetallic  gold  core-shell
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