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混合纳米结构的合成与表征

Synthesis and characterization of hybrid nanostructures.

作者信息

Mokari Taleb

机构信息

Department of Chemistry and Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev, Beer Sheva, Israel.

出版信息

Nano Rev. 2011;2. doi: 10.3402/nano.v2i0.5983. Epub 2011 May 4.

Abstract

There has been significant interest in the development of multicomponent nanocrystals formed by the assembly of two or more different materials with control over size, shape, composition, and spatial orientation. In particular, the selective growth of metals on the tips of semiconductor nanorods and wires can act to couple the electrical and optical properties of semiconductors with the unique properties of various metals. Here, we outline our progress on the solution-phase synthesis of metal-semiconductor heterojunctions formed by the growth of Au, Pt, or other binary catalytic metal systems on metal (Cd, Pb, Cu)-chalcogenide nanostructures. We show the ability to grow the metal on various shapes (spherical, rods, hexagonal prisms, and wires). Furthermore, manipulating the composition of the metal nanoparticles is also shown, where PtNi and PtCo alloys are our main focus. The magnetic and electrical properties of the developed hybrid nanostructures are shown.

摘要

由两种或更多种不同材料组装而成的多组分纳米晶体,在尺寸、形状、组成和空间取向方面具有可控性,这引发了人们极大的兴趣。特别是,在半导体纳米棒和纳米线的尖端选择性生长金属,可以将半导体的电学和光学特性与各种金属的独特特性结合起来。在此,我们概述了通过在金属(镉、铅、铜)硫族化物纳米结构上生长金、铂或其他二元催化金属体系而形成金属 - 半导体异质结的溶液相合成进展。我们展示了在各种形状(球形、棒状、六棱柱形和线状)上生长金属的能力。此外,还展示了对金属纳米颗粒组成的调控,其中铂镍和铂钴合金是我们的主要研究对象。文中展示了所制备的混合纳米结构的磁性和电学特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48de/3215196/176e757f7f27/NANO-2-5983-g002.jpg

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