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控制均匀贵金属纳米晶体的生长:基于水相的合成及其在生物医学中的一些应用。

Controlled growth of uniform noble metal nanocrystals: aqueous-based synthesis and some applications in biomedicine.

机构信息

Department of Chemistry, Faculty of Sciences, Hue University, Hue, Viet Nam.

出版信息

Colloids Surf B Biointerfaces. 2011 Nov 1;88(1):1-22. doi: 10.1016/j.colsurfb.2011.07.017. Epub 2011 Jul 18.

Abstract

Aqueous-dispersed single and binary noble metal nanocrystals have attracted much attention as key materials in many fields, especially in biomedicine, catalysis, etc. Controlled growth of the metal nuclei allow for the manipulation of uniform morphology of final products. This behavior would tailor their unique physiochemical and electronic properties and follows by their practical applications. This review presents an overall picture of kinetic formation of a particle and then summarizes an overview of recent progress in many research groups concerning aqueous- and/or polyol-based syntheses of many types of aqueous-dispersed single metallic and bimetallic nanocrystals with controlled shape. The main advantages in these synthetic approaches for the shape-controlled metal nanocrystals are simple, versatile, environmentally friendly, low cost, pure and single-crystalline products, and high yield. The formed products can be easily dispersed in water medium and compatible for biotechnological field. Particularly the biomolecule (antibody including protein and/or DNA)-conjugated gold nanocrystals have been utilized as an active agent for a broad range of biomedical applications. We expect that this review will have a high potential towards novel materials fabrication and nanotechnological fields.

摘要

水相分散的单金属和双金属纳米晶体作为许多领域(特别是在生物医药、催化等领域)的关键材料引起了广泛关注。金属核的可控生长允许对最终产物的均匀形态进行操纵。这种行为将调整它们独特的物理化学和电子特性,并随之应用于实际。本综述介绍了颗粒动力学形成的总体情况,然后总结了许多研究小组在水相和/或多元醇基合成多种水相分散的单金属和双金属纳米晶体方面的最新进展,这些纳米晶体具有可控的形状。这些合成方法在形状可控金属纳米晶体方面的主要优点是简单、通用、环保、低成本、纯单晶产物和高产率。形成的产物可以很容易地分散在水介质中,并与生物技术领域兼容。特别是生物分子(包括抗体的蛋白质和/或 DNA)-修饰的金纳米晶体已被用作广泛的生物医学应用的有效试剂。我们期望本综述将在新型材料制造和纳米技术领域具有很高的潜力。

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