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刺状金纳米壳

Spiky gold nanoshells.

机构信息

Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104, United States.

出版信息

Langmuir. 2010 Dec 21;26(24):19170-4. doi: 10.1021/la1038969. Epub 2010 Nov 19.

Abstract

We report a high-yield synthetic method for a new type of metal nanostructure, spiky gold nanoshells, which combine the morphological characteristics of hollow metal nanoshells and nanorods. Our method utilizes block copolymer assemblies and polymer beads as templates for the growth of spiky nanoshells. Various shapes of spiky metal nanoshells were prepared in addition to spherical nanoshells by using block copolymer assemblies such as rod-like micelles, vesicles, and bilayers as templates. Furthermore, spiky gold shells encapsulating magnetic nanoparticles or quantum dots were prepared based on the ability of block copolymers to self-assemble with various types of nanoparticles and molecules. The capability to encapsulate other materials in the core, the shape tunability, and the highly structured surface of spiky nanoshells should benefit a range of imaging, sensing, and medical applications of metal nanostructures.

摘要

我们报告了一种新型金属纳米结构——刺状金纳米壳的高产合成方法,它结合了空心金属纳米壳和纳米棒的形态特征。我们的方法利用嵌段共聚物组装体和聚合物珠作为模板来生长刺状纳米壳。通过使用棒状胶束、囊泡和双层等嵌段共聚物组装体作为模板,除了球形纳米壳之外,还制备了各种形状的刺状金属纳米壳。此外,基于嵌段共聚物与各种类型的纳米粒子和分子自组装的能力,制备了封装磁性纳米粒子或量子点的刺状金壳。刺状纳米壳的核内封装其他材料的能力、形状可调变性和高度结构化的表面应该有利于金属纳米结构在成像、传感和医疗应用等一系列领域的应用。

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